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Cell Motility|January 1, 1983
Movement of myosin-coated structures on actin cablesM P Sheetz, J A SpudichJournal of Supramolecular Structure|January 1, 1979
Structural states of dictyostelium myosinP R Stewart, J A SpudichThe Journal of Cell Biology|December 1, 1979
Cytochalasin inhibits the rate of elongation of actin filament fragmentsS S Brown, J A SpudichThe Journal of Cell Biology|September 1, 1984
A 45,000-mol-wt protein from unfertilized sea urchin eggs severs actin filaments in a calcium-dependent manner and increases the steady-state concentration of nonfilamentous actinL L Wang, J A SpudichProceedings of the National Academy of Sciences of the United States of America|August 1, 1980
ATP-driven steady-state exchange of monomeric and filamentous actin from Dictyostelium discoideumP A Simpson, J A SpudichThe Journal of Biological Chemistry|March 30, 2001
The myosin relay helix to converter interface remains intact throughout the actomyosin ATPase cycleW M Shih, J A SpudichCell Motility and the Cytoskeleton|January 1, 1995
Identification and molecular characterization of a yeast myosin IH V Goodson, J A SpudichScience (New York, N.Y.)|December 17, 1993
A functional recombinant myosin II lacking a regulatory light chain-binding siteT Q Uyeda, J A SpudichBiochemistry|July 15, 1997
Phenotypically selected mutations in myosin's actin binding domain demonstrate intermolecular contacts important for motor functionK C Giese, J A SpudichThe Journal of Cell Biology|March 1, 1981
Mechanism of action of cytochalasin: evidence that it binds to actin filament endsS S Brown, J A SpudichPageof 19