The myosin motor in muscle generates a smaller and slower working stroke at higher load
- 1 April 2004
- journal article
- Published by Springer Nature in Nature
- Vol. 428 (6982) , 578-581
- https://doi.org/10.1038/nature02380
Abstract
Muscle contraction is driven by the motor protein myosin II, which binds transiently to an actin filament, generates a unitary filament displacement or 'working stroke', then detaches and repeats the cycle. The stroke size has been measured previously using isolated myosin II molecules at low load, with rather variable results, but not at the higher loads that the motor works against during muscle contraction. Here we used a novel X-ray-interference technique to measure the working stroke of myosin II at constant load in an intact muscle cell, preserving the native structure and function of the motor. We show that the stroke is smaller and slower at higher load. The stroke size at low load is likely to be set by a structural limit; at higher loads, the motor detaches from actin before reaching this limit. The load dependence of the myosin II stroke is the primary molecular determinant of the mechanical performance and efficiency of skeletal muscle.Keywords
This publication has 27 references indexed in Scilit:
- The size and the speed of the working stroke of muscle myosin and its dependence on the forceThe Journal of Physiology, 2002
- Mechanism of force generation by myosin heads in skeletal muscleNature, 2002
- Interference fine structure and sarcomere length dependence of the axial x-ray pattern from active single muscle fibersProceedings of the National Academy of Sciences, 2000
- Single-Molecule Biomechanics with Optical MethodsScience, 1999
- A single myosin head moves along an actin filament with regular steps of 5.3 nanometresNature, 1999
- Crystal Structure of a Vertebrate Smooth Muscle Myosin Motor Domain and Its Complex with the Essential Light ChainCell, 1998
- Movement and force produced by a single myosin headNature, 1995
- X-ray diffraction measurements of the extensibility of actin and myosin filaments in contracting muscleBiophysical Journal, 1994
- Single myosin molecule mechanics: piconewton forces and nanometre stepsNature, 1994
- Three-dimensional structure of myosin subfragment-1: a molecular motorScience, 1993