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Journal of Supramolecular Structure|January 1, 1975
An activation mechanism for ATP cleavage in muscleW F Harrington, E Reisler, M BurkeProceedings of the National Academy of Sciences of the United States of America|December 1, 1973
Myosin ATP hydrolysis: a mechanism involving a magnesium chelate complexM Burke, E Reisler, W F HarringtonBiochemistry|November 29, 1977
Reactivity of essential thiols of myosin. Chemical probes of the activated stateE Reisler, M Burke, W F HarringtonBiochemistry|May 4, 1976
Effect of bridging the two essential thiols of myosin on its spectral and actin-binding propertiesM Burke, F Reisler, W F HarringtonProceedings of the National Academy of Sciences of the United States of America|March 1, 1971
A mechanochemical mechanism for muscle contractionW F HarringtonProceedings of the National Academy of Sciences of the United States of America|October 1, 1979
On the origin of the contractile force in skeletal muscleW F HarringtonProceedings of the National Academy of Sciences of the United States of America|October 1, 1981
Conformational transition in the myosin hinge upon activation of muscleH Ueno, W F HarringtonJournal of Molecular Biology|February 15, 1984
An enzyme-probe method to detect structural changes in the myosin rodH Ueno, W F HarringtonJournal of Molecular Biology|July 5, 1986
Local melting in the subfragment-2 region of myosin in activated muscle and its correlation with contractile forceH Ueno, W F HarringtonJournal of Molecular Biology|July 5, 1986
Temperature-dependence of local melting in the myosin subfragment-2 region of the rigor cross-bridgeH Ueno, W F HarringtonPageof 239