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September 6, 2005Proceedings of the National Academy of Sciences170 citationsOpen Access

A force-dependent state controls the coordination of processive myosin V

TPThomas J. PurcellHSH. Lee SweeneyJSJames A. Spudich

Structured PICO

P
Population
Single-headed myosin V molecule
I
Intervention
Application of approximately 2-pN forward or backward force using a modified laser-trap microscope
C
Comparator
Forward versus backward force application
O
Outcome
Kinetics and cycling of the myosin head

The coordination of myosin V stepping is mediated by strain-generated inhibition of the lead head.

Abstract

Myosin V is an efficient processive molecular motor. Recent experiments have shown how the structure and kinetics of myosin V are specialized to produce a highly processive motor capable of taking multiple 36-nm steps on an actin filament track. Here, we examine how two identical heads coordinate their activity to produce efficient hand-over-hand stepping. We have used a modified laser-trap microscope to apply a approximately 2-pN forward or backward force on a single-headed myosin V molecule, hypothesized to simulate forces experienced by the rear or lead head, respectively. We found that pulling forward produces only a small change in the kinetics, whereas pulling backward induces a large reduction in the cycling of the head. These results support a model in which the coordination of myosin V stepping is mediated by strain-generated inhibition of the lead head.

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Cite This Study

Purcell et al. (2005) studied this question.

synapsesocial.com/papers/6a20a3258af5c32ea66d8d6fhttps://doi.org/10.1073/pnas.0506441102
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