Ultra-rapid freezing and electron microscopy were used to directly observe structural details of frog muscle fibers in rigor, in relaxation, and during force development initiated by laser photolysis of DM-nitrophen (a caged Ca2+). Longitudinal sections from relaxed fibers show helical tracks of the myosin heads on the surface of the thick filaments. Fibers frozen at approximately 13, approximately 34, and approximately 220 ms after activation from the relaxed state by photorelease of Ca2+ all show surprisingly similar cross-bridge dispositions. In sections along the 1,1 lattice plane of activated fibers, individual cross-bridge densities have a wide range of shapes and angles, perpendicular to the fiber axis or pointing toward or away from...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...
AbstractStructural changes in the myosin cross-bridges were studied by small-angle x-ray diffraction...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
Ultra-rapid freezing and electron microscopy were used to directly observe structural details of fro...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
We show prolonged contraction of permeabilized muscle fibers of the frog during which structural ord...
AbstractTwo-dimensional x-ray diffraction was used to investigate structural features of cross-bridg...
A new approach was used to study transient structural states of cross-bridges during activation of m...
We show prolonged contraction of permeabilized muscle fibers of the frog during which structural ord...
Results were obtained from contracting frog muscles by collecting high quality time-resolved, two-di...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
It was shown previously that a significant fraction of the myosin crossbridges is attached to actin ...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...
AbstractStructural changes in the myosin cross-bridges were studied by small-angle x-ray diffraction...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
Ultra-rapid freezing and electron microscopy were used to directly observe structural details of fro...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
In order to understand the contraction mechanism in vertebrate skeletal muscle, one must correlate t...
We show prolonged contraction of permeabilized muscle fibers of the frog during which structural ord...
AbstractTwo-dimensional x-ray diffraction was used to investigate structural features of cross-bridg...
A new approach was used to study transient structural states of cross-bridges during activation of m...
We show prolonged contraction of permeabilized muscle fibers of the frog during which structural ord...
Results were obtained from contracting frog muscles by collecting high quality time-resolved, two-di...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...
It was shown previously that a significant fraction of the myosin crossbridges is attached to actin ...
ABSTRACT Structural changes in frog skeletal muscle were studied using x-ray diffraction with a time...
AbstractStructural changes in the myosin cross-bridges were studied by small-angle x-ray diffraction...
For the purpose of determining net interactions between actin and myosin filaments in muscle cells, ...