SlideShare ist ein Scribd-Unternehmen logo
1 von 44
Biophysical Studies of the Molecular Motor Kinesin Koch Lab, UNM Dept. Physics and  Center for High Technology Materials (CHTM) Steve Koch, DTRA Co-PI, Experimental Lead Asst. Prof. Physics and Astronomy Larry Herskowitz, IGERT Fellow Physics Ph.D. Student Anthony Salvagno, IGERT Fellow Physics Ph.D. Student Brigette Black Physics Ph.D. Student Andy Maloney, NSF IGERT Fellow Physics Ph.D. Student Igor Kuznetsov Postdoc Linh Le Physics B.S. @ UNM Now biophysics grad @ Ohio State “ Kiney” Brian Josey Physics B.S. Student This talk was presented at the UNM department of chemistry on Sept. 11, 2009.  I have tried to give appropriate credit on all images used—Steve Koch
[object Object],[object Object],[object Object],[object Object],[object Object],KochLab Overview / Acknowledgments Susan Atlas —Lead of the DTRA project UNM Physics / Cancer Center / Director of CARC Haiqing Liu —Microdevice applications of kinesin LANL & Center for Integrated Nanotechnology (CINT) Evan Evans Lab —Single-molecule thermodynamics and kinetics U. New Mexico / U. British Columbia  / Boston U. Collaborations Funding DTRA —Basic Science;  CHTM —Startup;  ACS —Jan Oliver IRG
Outline for today’s talk ,[object Object],[object Object],[object Object],[object Object],[object Object]
Kinesin is a eukaryotic molecular motor protein with a number of intracellular functions Mitosis Intracellular transport
Kinesin binds to microtubules and uses  ATP hydolysis to walk along tubulin protofilaments An overview of the  two basic components of this system: Microtubules Kinesin Microtubules are a key component of the system: kinesin does not move or catalyze ATP hydrolysis in absence of MTs Goldstein Lab
Microtubules are polymers of tubulin heterodimers 25 nm 4 nm 8 nm
Microtubules can be reliably polymerized in vitro  In living cells, predominant form of MTs have 13 protofilaments (PFs) In vitro “reassembly” of microtubules was possible by the early 1970s (Borisy, Brinkley, …) Typically performed with purified bovine or porcine brain tubulin Produces an assortment of MTs with varying numbers of PFs (usually not 13) Recombinant tubulin is not readily available MTs are stabilized by taxol … chemical cross-linking is another strategy Easily visualized by fluorescence microscopy - +    tubulin dimer   Protofilament 25 nm
Kinesin binds to microtubules and uses  ATP hydrolysis to walk along tubulin protofilaments An overview of the  two basic components of this system: Microtubules Kinesin Goldstein Lab
Kinesin is a eukaryotic molecular motor protein with a number of intracellular functions Mitosis Intracellular transport Vale, Reese, Sheetz, 1985, Cell  42  39-50.  “Identification of a Novel Force-Generating Protein, Kinesin, Involved in Microtubule-Based Motility.” At least 14 families of kinesin across all eukaryotes Dimeric “conventional” kinesin-1 : vesicle transport Kinesin-1, -2, -3, etc… E.g., Kinesin-5 is tetrameric kinesin: spindle formation HHMI Winter Bulletin 2005 Kinesin-5 tetramers
Conventional kinesin-1 “walks” along protofiliments  in hand-over-hand mechanism Sablin and Fletterick, 2004 JBC
Processivity Thorn, Ubersax, Vale JCB 2000
A possible mechanism for kinesin procession ,[object Object],[object Object],[object Object],[object Object],[object Object],R. D. Vale and R. A. Milligan, Science  288 , 88 (2000).
Truncated, tagged conventional kinesin constructs Coy, Hancock, Wagenbock, Howard (1999) Full length conventional kinesin  self-inhibits by tail binding to motor domain Asbury, Fehr, Block (2003) Recombinant kinesin expressed in E. coli, purified by his-tag methods Limited commercial availability
Striving for atomistic insights into catalytic mechanism Sablin and Fletterick, 2004 JBC Much has been learned about kinesin at the stochastic (mechanical) level But atomistic understanding of mechanochemistry is lacking Our goal is to gain atomistic insight via a variety of experiments and simulations
Our DTRA Project: “Coupled Atomistic Modeling and Experimental Studies of Energy Transduction and Catalysis in the Molecular Motor Protein Kinesin”  Susan Atlas and Steve Valone (LANL) “ Charge transfer embedded atom model” (CT-EAM) Atomistic modeling of kinesin catalytic core Kochlab: Biophysical studies of kinesin
An initial connection between theory & experiment: Water! CT-EAM can correctly model water; can make predictions about how osmotic pressure and heavy water will affect kinetics Kochlab: Can vary water osmotic pressure; heavy / light water
Biophysicists have often ignored water  Me too, before I saw work from Parsegian, Rand, Rau 1995
The osmotic stress method relies on changing water activity by adding high concentration of solutes Parsegian, Rand, Rau, Methods in Enzymology 259 (1995) “ Osmolyte” (sucrose, betaine, PEG, …) Reduces the chemical potential of water Molecule of interest has a shell of hydrating water molecules
No osmotic stress studies of kinesin    untapped Utility proven in protein-DNA studies Protein DNA Non-specific, K nonsp Specific complex, K sp Sidorova and Rau, PNAS 1996
Osmotic stress dramatically increases lifetime of bound molecular complexes Osmotic pressure helpful For increasing lifetime too ln(Fraction bound) Sidorova and Rau Kinesin binding / unbinding
Why is water so important? Each time the kinesin head binds to tubulin, dozens of “hydrating” water molecules must be excluded. Each time the kinesin unbinds, water must “rehydrate” Thus, “water activity” strongly impacts binding kinetics (and whole kinetic cycle) Okada, Higuchi, Hirokawa Water excluded Water hydrating
Osmotic stress increases myosin-actin affinity (only one study I’m aware of) Highsmith et al. Biophys. J. 1996 No data exist for kinesin-MT Potentially many  high-impact results
So, our first line of experiments will utilize  osmotic stress (and heavy water) Properties of water will provide initial strong ties between theory and experiment Provide a very interesting line of high-impact experiments Also provide a connection to technological applications of kinesin / MT system Long-term stability of kinesin and microtubules Up-modulation of kinesin processivity? velocity? strength?
We will utilize two independent experimental platforms “ Easy” Robust Many experimental “knobs” Limited readout More difficult Many experimental “knobs” Many readout variables
Gliding motility assay Andy, Brigette, Linh have gliding assay working very well in our lab! Passivated glass surface (casein) Buffer includes ATP, antifade cocktail The assay is a bit finicky…light-induced microtubule disintegration is one problem.
Microtubule velocity in gliding assay is measured via LabVIEW image tracking software written by Larry
Gliding motility assay will be our initial main assay Operate in the high motor density regime Main experimental result is  transport velocity Osmotic stress Light / heavy water Temperature, metal ions, ATP concentration Site-directed mutagenesis Experimental “knobs” to obtain data that can be compared with theory  in the iterative loop Passivated glass surface (casein) Buffer includes ATP, antifade cocktail
Bead motility assay Adrian Fehr, Chip Asbury Science 2003 Steve Block Lab, Stanford Single-molecule kinesin transport Steve Block Lab, Stanford
Optical tweezers are formed by shining laser light into a high numerical aperture objective Optical Trap “ Laser tweezers” Microsphere Biomolecular  “Tether” Coverglass Kochlab Optical Tweezers
[object Object],Using optical tweezers, we can apply and measure forces on single biomolecules Infrared laser focused  through microscope objective piezoelectric stage Quadrant photodiode to measure force Optical Trap Microsphere Biomolecular  “Tether” Coverglass ,[object Object],[object Object],Dielectic particles (500 nm polystyrene) attracted to laser focus
Using optical tweezers, we can apply and measure forces on single tethered biomolecules Microsphere Biomolecular  “ Tether” Coverglass ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],OT feedback control software is crucial component We have a user-friendly LabVIEW application with a variety of feedback modes
Bead motility assay provides wealth of information High kinesin concentration Measure velocity of collective molecular motors (similar to gliding assay) Low kinesin concentration Single-molecule studies of kinesin:  processivity force-velocity pull-off force  Block et al. (2003) PNAS
Bead motility assay High kinesin concentration Measure velocity of collective molecular motors (similar to gliding assay) Low kinesin concentration Single-molecule studies of kinesin:  processivity force-velocity pull-off force  Experimental knobs for iterative theory/experiment loop: Osmotic stress Light / heavy water Temperature, metal ions, ATP concentration Site-directed mutagenesis We’ve not yet implemented this assay
Modeling: Kinesin kinetic cycle is complicated Gilbert et al., Nature 1995 R. D. Vale and R. A. Milligan, Science  288 , 88 (2000). We can not measure all of these rate constants directly…We measure: velocity; processivity; stall force; pull-off force
We have written a stochastic simulation for interpreting / predicting results of assays DT Gillespie , “ Exact Stochastic Simulation of Coupled Chemical Reactions”  The Journal of Physical Chemistry,  V. 8   p. 2340 1977 State machine, written in LabVIEW by Larry
Results of simulation can be viewed with LabVIEW animation – gives insight into kinetic pathway
Simulation of a single kinesin run
Repeating many times, we can measure the “processivity” -> average run length Guydosh @ Block Nature 2009 optical tweezers measurements
Changing ATP concentration in the simulation produces Michaelis-Menten kinetics 200 simulations at each concentration
Application of opposing and assisting force also reproduces results seen with OT data! Block et al. (2003) PNAS
Acknowledgments Susan Atlas —Lead of the DTRA project UNM Physics / Cancer Center / Director of CARC Steve Valone —Co-PI (LANL) Haiqing Liu —Microdevice applications of kinesin LANL & Center for Integrated Nanotechnology (CINT) Evan Evans Lab —Single-molecule thermodynamics and kinetics U. New Mexico / U. British Columbia  / Boston U. Collaborations Funding DTRA —Basic Science;  CHTM —Startup;  ACS —Jan Oliver IRG Our Lab —Larry Herskowitz, Andy Maloney, Brigette Black, Anthony Salvagno, Linh Le, Brian Josey, Igor Kuznetzov
End
Our preliminary data showed that osmotic stress effects protein-DNA unbinding forces X-intercept of these curves reveals off-rate Evans & Ritchie 1997 theory Protein-DNA interactions probed by DNA unzipping is another Koch Lab project We anticipate similar effects of osmotic stress on kinesin-MT forced disruption Specific Non-specific
Kinesin-microtubule unbinding forces Kawaguchi, Uemura, Ishiwata 2003 “ Dynamic Strength of Molecular Adhesion Bonds” Evan Evans and Ken Ritchie, 1997 Biophys. J. Brower-Toland et al., 2002

Weitere ähnliche Inhalte

Was ist angesagt?

Probing Molecular Electronic Structure Using High Harmonic Generation Tomography
Probing Molecular Electronic Structure Using High Harmonic Generation TomographyProbing Molecular Electronic Structure Using High Harmonic Generation Tomography
Probing Molecular Electronic Structure Using High Harmonic Generation Tomography
Chelsey Crosse
 
Mid-IR Pulse Generation Using Cr2+:ZnSe
Mid-IR Pulse Generation Using Cr2+:ZnSeMid-IR Pulse Generation Using Cr2+:ZnSe
Mid-IR Pulse Generation Using Cr2+:ZnSe
Chelsey Crosse
 
poster_2014_Diener_pdy
poster_2014_Diener_pdyposter_2014_Diener_pdy
poster_2014_Diener_pdy
Zach Diener
 

Was ist angesagt? (20)

Methods of study of protein by kk sahu
Methods of study of protein by kk sahuMethods of study of protein by kk sahu
Methods of study of protein by kk sahu
 
Probing Molecular Electronic Structure Using High Harmonic Generation Tomography
Probing Molecular Electronic Structure Using High Harmonic Generation TomographyProbing Molecular Electronic Structure Using High Harmonic Generation Tomography
Probing Molecular Electronic Structure Using High Harmonic Generation Tomography
 
Interpreting MS\\MS Results
Interpreting  MS\\MS ResultsInterpreting  MS\\MS Results
Interpreting MS\\MS Results
 
Kinetic modelling of nitrate removal from aqueous solution during electrocoag...
Kinetic modelling of nitrate removal from aqueous solution during electrocoag...Kinetic modelling of nitrate removal from aqueous solution during electrocoag...
Kinetic modelling of nitrate removal from aqueous solution during electrocoag...
 
Moving to a capillary electrophoresis platform assessing the role in hemoglob...
Moving to a capillary electrophoresis platform assessing the role in hemoglob...Moving to a capillary electrophoresis platform assessing the role in hemoglob...
Moving to a capillary electrophoresis platform assessing the role in hemoglob...
 
Positron emission tomography pet
Positron emission tomography petPositron emission tomography pet
Positron emission tomography pet
 
2003 capillaryelectrophoresis
2003 capillaryelectrophoresis2003 capillaryelectrophoresis
2003 capillaryelectrophoresis
 
Mid-IR Pulse Generation Using Cr2+:ZnSe
Mid-IR Pulse Generation Using Cr2+:ZnSeMid-IR Pulse Generation Using Cr2+:ZnSe
Mid-IR Pulse Generation Using Cr2+:ZnSe
 
Capillary electrophoresis
Capillary electrophoresisCapillary electrophoresis
Capillary electrophoresis
 
Radioisotopes
RadioisotopesRadioisotopes
Radioisotopes
 
poster_2014_Diener_pdy
poster_2014_Diener_pdyposter_2014_Diener_pdy
poster_2014_Diener_pdy
 
Radioisotopes and their biological effect
Radioisotopes and their biological effectRadioisotopes and their biological effect
Radioisotopes and their biological effect
 
Nuclear medicine
Nuclear medicineNuclear medicine
Nuclear medicine
 
Radioactive isotopes
Radioactive isotopesRadioactive isotopes
Radioactive isotopes
 
Dissertation_Boll
Dissertation_BollDissertation_Boll
Dissertation_Boll
 
Nmr
NmrNmr
Nmr
 
Nuclear Reactor
Nuclear ReactorNuclear Reactor
Nuclear Reactor
 
Photosynthesis
Photosynthesis Photosynthesis
Photosynthesis
 
Kumcintroductiontoflowcytometry 141106163704-conversion-gate02
Kumcintroductiontoflowcytometry 141106163704-conversion-gate02Kumcintroductiontoflowcytometry 141106163704-conversion-gate02
Kumcintroductiontoflowcytometry 141106163704-conversion-gate02
 
Cells & Cellphones - Looking deep at the molecular level
Cells & Cellphones - Looking deep at the molecular levelCells & Cellphones - Looking deep at the molecular level
Cells & Cellphones - Looking deep at the molecular level
 

Ähnlich wie 2009 September Kinesin Talk at UNM Chemistry

Osmotic stress and water isotope effects in kinesin-1 gliding motility assays
Osmotic stress and water isotope effects in kinesin-1 gliding motility assaysOsmotic stress and water isotope effects in kinesin-1 gliding motility assays
Osmotic stress and water isotope effects in kinesin-1 gliding motility assays
Steve Koch
 
2021 understanding li-based battery materials via electrochemical impedance...
2021   understanding li-based battery materials via electrochemical impedance...2021   understanding li-based battery materials via electrochemical impedance...
2021 understanding li-based battery materials via electrochemical impedance...
Ary Assuncao
 
Quantum entanglement in theoretical physics as a new insight into cancer biology
Quantum entanglement in theoretical physics as a new insight into cancer biologyQuantum entanglement in theoretical physics as a new insight into cancer biology
Quantum entanglement in theoretical physics as a new insight into cancer biology
African Journal of Biological Sciences
 
Excitable Cells: Revision Notes
Excitable Cells: Revision NotesExcitable Cells: Revision Notes
Excitable Cells: Revision Notes
meducationdotnet
 
The Wonderful World of Scanning Electrochemical Microscopy (SECM)
The Wonderful World of Scanning Electrochemical Microscopy (SECM)The Wonderful World of Scanning Electrochemical Microscopy (SECM)
The Wonderful World of Scanning Electrochemical Microscopy (SECM)
InsideScientific
 

Ähnlich wie 2009 September Kinesin Talk at UNM Chemistry (20)

2010 DTRA Update
2010 DTRA Update2010 DTRA Update
2010 DTRA Update
 
Capillary electrophoresis
Capillary electrophoresisCapillary electrophoresis
Capillary electrophoresis
 
Kumc introduction to flow cytometry
Kumc introduction to flow cytometryKumc introduction to flow cytometry
Kumc introduction to flow cytometry
 
Osmotic stress and water isotope effects in kinesin-1 gliding motility assays
Osmotic stress and water isotope effects in kinesin-1 gliding motility assaysOsmotic stress and water isotope effects in kinesin-1 gliding motility assays
Osmotic stress and water isotope effects in kinesin-1 gliding motility assays
 
Talk multiscale analysis of ionic solutions is unavoidable
  Talk multiscale analysis of ionic solutions is unavoidable  Talk multiscale analysis of ionic solutions is unavoidable
Talk multiscale analysis of ionic solutions is unavoidable
 
A04 06 0108
A04 06 0108A04 06 0108
A04 06 0108
 
A04 06 0108
A04 06 0108A04 06 0108
A04 06 0108
 
Cat 2
Cat 2Cat 2
Cat 2
 
2021 understanding li-based battery materials via electrochemical impedance...
2021   understanding li-based battery materials via electrochemical impedance...2021   understanding li-based battery materials via electrochemical impedance...
2021 understanding li-based battery materials via electrochemical impedance...
 
Device approach to biology and engineering
Device approach to biology and engineeringDevice approach to biology and engineering
Device approach to biology and engineering
 
Abstract
AbstractAbstract
Abstract
 
Quantum entanglement in theoretical physics as a new insight into cancer biology
Quantum entanglement in theoretical physics as a new insight into cancer biologyQuantum entanglement in theoretical physics as a new insight into cancer biology
Quantum entanglement in theoretical physics as a new insight into cancer biology
 
The stuff that proteins are made of
The stuff that proteins are made ofThe stuff that proteins are made of
The stuff that proteins are made of
 
Excitable Cells: Revision Notes
Excitable Cells: Revision NotesExcitable Cells: Revision Notes
Excitable Cells: Revision Notes
 
The great basic question of science: Membrane compartment or non-membrane pha...
The great basic question of science: Membrane compartment or non-membrane pha...The great basic question of science: Membrane compartment or non-membrane pha...
The great basic question of science: Membrane compartment or non-membrane pha...
 
The Wonderful World of Scanning Electrochemical Microscopy (SECM)
The Wonderful World of Scanning Electrochemical Microscopy (SECM)The Wonderful World of Scanning Electrochemical Microscopy (SECM)
The Wonderful World of Scanning Electrochemical Microscopy (SECM)
 
1306 energy and enzymes
1306 energy and enzymes1306 energy and enzymes
1306 energy and enzymes
 
Lens as an Osmotic Pump, a Bidomain Model. DOI: 10.13140/RG.2.2.25046.80966
Lens as an Osmotic Pump, a Bidomain Model. DOI: 10.13140/RG.2.2.25046.80966Lens as an Osmotic Pump, a Bidomain Model. DOI: 10.13140/RG.2.2.25046.80966
Lens as an Osmotic Pump, a Bidomain Model. DOI: 10.13140/RG.2.2.25046.80966
 
Bradshaw - Human Performance and Biosystems - Spring Review 2013
Bradshaw - Human Performance and Biosystems - Spring Review 2013Bradshaw - Human Performance and Biosystems - Spring Review 2013
Bradshaw - Human Performance and Biosystems - Spring Review 2013
 
MoMo
MoMoMoMo
MoMo
 

Mehr von Steve Koch

Mehr von Steve Koch (20)

2011 NSF CAREER_Steve Koch Full Project Description
2011 NSF CAREER_Steve Koch Full Project Description 2011 NSF CAREER_Steve Koch Full Project Description
2011 NSF CAREER_Steve Koch Full Project Description
 
Science Online2010 Open Notebook Science
Science Online2010 Open Notebook ScienceScience Online2010 Open Notebook Science
Science Online2010 Open Notebook Science
 
2009 November Heavy Water Update
2009 November Heavy Water Update2009 November Heavy Water Update
2009 November Heavy Water Update
 
Final lecture -- talents advice
Final lecture -- talents adviceFinal lecture -- talents advice
Final lecture -- talents advice
 
24 Apr 28 Newtons Laws, Linear Angular Momentum Presented
24 Apr 28 Newtons Laws, Linear Angular Momentum Presented24 Apr 28 Newtons Laws, Linear Angular Momentum Presented
24 Apr 28 Newtons Laws, Linear Angular Momentum Presented
 
23 Apr 21 Assorted Topics, Mechanics Intro Actual Presented
23 Apr 21 Assorted Topics, Mechanics Intro Actual Presented23 Apr 21 Assorted Topics, Mechanics Intro Actual Presented
23 Apr 21 Assorted Topics, Mechanics Intro Actual Presented
 
21 Apr 14 Fission, Fusion, Nuclear Energy, Nw With Brainstorming
21 Apr 14 Fission, Fusion, Nuclear Energy, Nw With Brainstorming21 Apr 14 Fission, Fusion, Nuclear Energy, Nw With Brainstorming
21 Apr 14 Fission, Fusion, Nuclear Energy, Nw With Brainstorming
 
20 Apr 9 Nuclear, Strong Force, Fission With Brainstorming
20 Apr 9 Nuclear, Strong Force, Fission With Brainstorming20 Apr 9 Nuclear, Strong Force, Fission With Brainstorming
20 Apr 9 Nuclear, Strong Force, Fission With Brainstorming
 
19 Apr 7 Fundamental Forces, Radiation Doses, Medical Applications Actual Pre...
19 Apr 7 Fundamental Forces, Radiation Doses, Medical Applications Actual Pre...19 Apr 7 Fundamental Forces, Radiation Doses, Medical Applications Actual Pre...
19 Apr 7 Fundamental Forces, Radiation Doses, Medical Applications Actual Pre...
 
18 Apr 2 Bg Radiation, Shielding, Inverse Square For Slideshare
18 Apr 2 Bg Radiation, Shielding, Inverse Square For Slideshare18 Apr 2 Bg Radiation, Shielding, Inverse Square For Slideshare
18 Apr 2 Bg Radiation, Shielding, Inverse Square For Slideshare
 
17 Mar 31 Radioactivity For Slideshare
17 Mar 31 Radioactivity For Slideshare17 Mar 31 Radioactivity For Slideshare
17 Mar 31 Radioactivity For Slideshare
 
16 Mar 26 Soap Bubble, Photoelectric, Wave Particle Duality Actual
16 Mar 26 Soap Bubble, Photoelectric, Wave Particle Duality Actual16 Mar 26 Soap Bubble, Photoelectric, Wave Particle Duality Actual
16 Mar 26 Soap Bubble, Photoelectric, Wave Particle Duality Actual
 
15 Mar 24 Interference, Diffraction
15 Mar 24 Interference, Diffraction15 Mar 24 Interference, Diffraction
15 Mar 24 Interference, Diffraction
 
14 Mar 10 Diffraction, Interference Actual Presented For Slideshare
14 Mar 10 Diffraction, Interference Actual Presented For Slideshare14 Mar 10 Diffraction, Interference Actual Presented For Slideshare
14 Mar 10 Diffraction, Interference Actual Presented For Slideshare
 
13 March 5 Microwaves, Polarization
13 March 5 Microwaves, Polarization13 March 5 Microwaves, Polarization
13 March 5 Microwaves, Polarization
 
12 Mar 3 Rainbows Etc Actual Presented
12 Mar 3 Rainbows Etc Actual Presented12 Mar 3 Rainbows Etc Actual Presented
12 Mar 3 Rainbows Etc Actual Presented
 
11_Feb 26_Lasers, colors
11_Feb 26_Lasers, colors11_Feb 26_Lasers, colors
11_Feb 26_Lasers, colors
 
10 Feb 24 Eye, Scattering, Fluorescence, Phosphorescence Slideshare
10 Feb 24 Eye, Scattering, Fluorescence, Phosphorescence Slideshare10 Feb 24 Eye, Scattering, Fluorescence, Phosphorescence Slideshare
10 Feb 24 Eye, Scattering, Fluorescence, Phosphorescence Slideshare
 
09 Feb 19 Blackbody, Sun
09 Feb 19 Blackbody, Sun09 Feb 19 Blackbody, Sun
09 Feb 19 Blackbody, Sun
 
08 Feb 17 Light, Electron E Levels Actual Presented
08 Feb 17 Light, Electron E Levels Actual Presented08 Feb 17 Light, Electron E Levels Actual Presented
08 Feb 17 Light, Electron E Levels Actual Presented
 

Kürzlich hochgeladen

Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slide
vu2urc
 

Kürzlich hochgeladen (20)

Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your Business
 
AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of Terraform
 
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUnderstanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...
Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024
 
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemkeProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
 
Tech Trends Report 2024 Future Today Institute.pdf
Tech Trends Report 2024 Future Today Institute.pdfTech Trends Report 2024 Future Today Institute.pdf
Tech Trends Report 2024 Future Today Institute.pdf
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed texts
 
Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slide
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivity
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf
 

2009 September Kinesin Talk at UNM Chemistry

  • 1. Biophysical Studies of the Molecular Motor Kinesin Koch Lab, UNM Dept. Physics and Center for High Technology Materials (CHTM) Steve Koch, DTRA Co-PI, Experimental Lead Asst. Prof. Physics and Astronomy Larry Herskowitz, IGERT Fellow Physics Ph.D. Student Anthony Salvagno, IGERT Fellow Physics Ph.D. Student Brigette Black Physics Ph.D. Student Andy Maloney, NSF IGERT Fellow Physics Ph.D. Student Igor Kuznetsov Postdoc Linh Le Physics B.S. @ UNM Now biophysics grad @ Ohio State “ Kiney” Brian Josey Physics B.S. Student This talk was presented at the UNM department of chemistry on Sept. 11, 2009. I have tried to give appropriate credit on all images used—Steve Koch
  • 2.
  • 3.
  • 4. Kinesin is a eukaryotic molecular motor protein with a number of intracellular functions Mitosis Intracellular transport
  • 5. Kinesin binds to microtubules and uses ATP hydolysis to walk along tubulin protofilaments An overview of the two basic components of this system: Microtubules Kinesin Microtubules are a key component of the system: kinesin does not move or catalyze ATP hydrolysis in absence of MTs Goldstein Lab
  • 6. Microtubules are polymers of tubulin heterodimers 25 nm 4 nm 8 nm
  • 7. Microtubules can be reliably polymerized in vitro In living cells, predominant form of MTs have 13 protofilaments (PFs) In vitro “reassembly” of microtubules was possible by the early 1970s (Borisy, Brinkley, …) Typically performed with purified bovine or porcine brain tubulin Produces an assortment of MTs with varying numbers of PFs (usually not 13) Recombinant tubulin is not readily available MTs are stabilized by taxol … chemical cross-linking is another strategy Easily visualized by fluorescence microscopy - +  tubulin dimer   Protofilament 25 nm
  • 8. Kinesin binds to microtubules and uses ATP hydrolysis to walk along tubulin protofilaments An overview of the two basic components of this system: Microtubules Kinesin Goldstein Lab
  • 9. Kinesin is a eukaryotic molecular motor protein with a number of intracellular functions Mitosis Intracellular transport Vale, Reese, Sheetz, 1985, Cell 42 39-50. “Identification of a Novel Force-Generating Protein, Kinesin, Involved in Microtubule-Based Motility.” At least 14 families of kinesin across all eukaryotes Dimeric “conventional” kinesin-1 : vesicle transport Kinesin-1, -2, -3, etc… E.g., Kinesin-5 is tetrameric kinesin: spindle formation HHMI Winter Bulletin 2005 Kinesin-5 tetramers
  • 10. Conventional kinesin-1 “walks” along protofiliments in hand-over-hand mechanism Sablin and Fletterick, 2004 JBC
  • 12.
  • 13. Truncated, tagged conventional kinesin constructs Coy, Hancock, Wagenbock, Howard (1999) Full length conventional kinesin self-inhibits by tail binding to motor domain Asbury, Fehr, Block (2003) Recombinant kinesin expressed in E. coli, purified by his-tag methods Limited commercial availability
  • 14. Striving for atomistic insights into catalytic mechanism Sablin and Fletterick, 2004 JBC Much has been learned about kinesin at the stochastic (mechanical) level But atomistic understanding of mechanochemistry is lacking Our goal is to gain atomistic insight via a variety of experiments and simulations
  • 15. Our DTRA Project: “Coupled Atomistic Modeling and Experimental Studies of Energy Transduction and Catalysis in the Molecular Motor Protein Kinesin” Susan Atlas and Steve Valone (LANL) “ Charge transfer embedded atom model” (CT-EAM) Atomistic modeling of kinesin catalytic core Kochlab: Biophysical studies of kinesin
  • 16. An initial connection between theory & experiment: Water! CT-EAM can correctly model water; can make predictions about how osmotic pressure and heavy water will affect kinetics Kochlab: Can vary water osmotic pressure; heavy / light water
  • 17. Biophysicists have often ignored water Me too, before I saw work from Parsegian, Rand, Rau 1995
  • 18. The osmotic stress method relies on changing water activity by adding high concentration of solutes Parsegian, Rand, Rau, Methods in Enzymology 259 (1995) “ Osmolyte” (sucrose, betaine, PEG, …) Reduces the chemical potential of water Molecule of interest has a shell of hydrating water molecules
  • 19. No osmotic stress studies of kinesin  untapped Utility proven in protein-DNA studies Protein DNA Non-specific, K nonsp Specific complex, K sp Sidorova and Rau, PNAS 1996
  • 20. Osmotic stress dramatically increases lifetime of bound molecular complexes Osmotic pressure helpful For increasing lifetime too ln(Fraction bound) Sidorova and Rau Kinesin binding / unbinding
  • 21. Why is water so important? Each time the kinesin head binds to tubulin, dozens of “hydrating” water molecules must be excluded. Each time the kinesin unbinds, water must “rehydrate” Thus, “water activity” strongly impacts binding kinetics (and whole kinetic cycle) Okada, Higuchi, Hirokawa Water excluded Water hydrating
  • 22. Osmotic stress increases myosin-actin affinity (only one study I’m aware of) Highsmith et al. Biophys. J. 1996 No data exist for kinesin-MT Potentially many high-impact results
  • 23. So, our first line of experiments will utilize osmotic stress (and heavy water) Properties of water will provide initial strong ties between theory and experiment Provide a very interesting line of high-impact experiments Also provide a connection to technological applications of kinesin / MT system Long-term stability of kinesin and microtubules Up-modulation of kinesin processivity? velocity? strength?
  • 24. We will utilize two independent experimental platforms “ Easy” Robust Many experimental “knobs” Limited readout More difficult Many experimental “knobs” Many readout variables
  • 25. Gliding motility assay Andy, Brigette, Linh have gliding assay working very well in our lab! Passivated glass surface (casein) Buffer includes ATP, antifade cocktail The assay is a bit finicky…light-induced microtubule disintegration is one problem.
  • 26. Microtubule velocity in gliding assay is measured via LabVIEW image tracking software written by Larry
  • 27. Gliding motility assay will be our initial main assay Operate in the high motor density regime Main experimental result is transport velocity Osmotic stress Light / heavy water Temperature, metal ions, ATP concentration Site-directed mutagenesis Experimental “knobs” to obtain data that can be compared with theory in the iterative loop Passivated glass surface (casein) Buffer includes ATP, antifade cocktail
  • 28. Bead motility assay Adrian Fehr, Chip Asbury Science 2003 Steve Block Lab, Stanford Single-molecule kinesin transport Steve Block Lab, Stanford
  • 29. Optical tweezers are formed by shining laser light into a high numerical aperture objective Optical Trap “ Laser tweezers” Microsphere Biomolecular “Tether” Coverglass Kochlab Optical Tweezers
  • 30.
  • 31.
  • 32. Bead motility assay provides wealth of information High kinesin concentration Measure velocity of collective molecular motors (similar to gliding assay) Low kinesin concentration Single-molecule studies of kinesin: processivity force-velocity pull-off force Block et al. (2003) PNAS
  • 33. Bead motility assay High kinesin concentration Measure velocity of collective molecular motors (similar to gliding assay) Low kinesin concentration Single-molecule studies of kinesin: processivity force-velocity pull-off force Experimental knobs for iterative theory/experiment loop: Osmotic stress Light / heavy water Temperature, metal ions, ATP concentration Site-directed mutagenesis We’ve not yet implemented this assay
  • 34. Modeling: Kinesin kinetic cycle is complicated Gilbert et al., Nature 1995 R. D. Vale and R. A. Milligan, Science 288 , 88 (2000). We can not measure all of these rate constants directly…We measure: velocity; processivity; stall force; pull-off force
  • 35. We have written a stochastic simulation for interpreting / predicting results of assays DT Gillespie , “ Exact Stochastic Simulation of Coupled Chemical Reactions” The Journal of Physical Chemistry, V. 8 p. 2340 1977 State machine, written in LabVIEW by Larry
  • 36. Results of simulation can be viewed with LabVIEW animation – gives insight into kinetic pathway
  • 37. Simulation of a single kinesin run
  • 38. Repeating many times, we can measure the “processivity” -> average run length Guydosh @ Block Nature 2009 optical tweezers measurements
  • 39. Changing ATP concentration in the simulation produces Michaelis-Menten kinetics 200 simulations at each concentration
  • 40. Application of opposing and assisting force also reproduces results seen with OT data! Block et al. (2003) PNAS
  • 41. Acknowledgments Susan Atlas —Lead of the DTRA project UNM Physics / Cancer Center / Director of CARC Steve Valone —Co-PI (LANL) Haiqing Liu —Microdevice applications of kinesin LANL & Center for Integrated Nanotechnology (CINT) Evan Evans Lab —Single-molecule thermodynamics and kinetics U. New Mexico / U. British Columbia / Boston U. Collaborations Funding DTRA —Basic Science; CHTM —Startup; ACS —Jan Oliver IRG Our Lab —Larry Herskowitz, Andy Maloney, Brigette Black, Anthony Salvagno, Linh Le, Brian Josey, Igor Kuznetzov
  • 42. End
  • 43. Our preliminary data showed that osmotic stress effects protein-DNA unbinding forces X-intercept of these curves reveals off-rate Evans & Ritchie 1997 theory Protein-DNA interactions probed by DNA unzipping is another Koch Lab project We anticipate similar effects of osmotic stress on kinesin-MT forced disruption Specific Non-specific
  • 44. Kinesin-microtubule unbinding forces Kawaguchi, Uemura, Ishiwata 2003 “ Dynamic Strength of Molecular Adhesion Bonds” Evan Evans and Ken Ritchie, 1997 Biophys. J. Brower-Toland et al., 2002