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Biochemistry|May 24, 1994
Inhibition of ATP binding to myofibrils and acto-myosin subfragment 1 by caged ATPJ Sleep, C Herrmann, T Barman, et al.Biochimie|March 1, 1989
Cryoenzymic studies on myosin: transient kinetic evidence for two types of head with different ATP binding propertiesC Tesi, N Bachouchi, T Barman, et al.Biochemistry|April 23, 1991
Cryoenzymic studies on actomyosin ATPase: kinetic evidence for communication between the actin and ATP sites on myosinC Tesi, K Kitagishi, F Travers, et al.FEBS Letters|March 7, 1983
A jump in an Arrhenius plot can be the consequence of a phase transition. The binding of ATP to myosin subfragment 1J A Biosca, F Travers, T E BarmanProceedings of the National Academy of Sciences of the United States of America|November 1, 1985
Cryobaroenzymic studies as a tool for investigating activated complexes: creatine kinase.ADP.Mg.nitrate.creatine as a modelC Balny, F Travers, T Barman, et al.Biochemistry|June 20, 2000
Kinetics of the initial steps of rabbit psoas myofibrillar ATPases studied by tryptophan and pyrene fluorescence stopped-flow and rapid flow-quench. Evidence that cross-bridge detachment is slower than ATP bindingR Stehle, C Lionne, F Travers, et al.Biochemistry|September 1, 1992
Early steps of the Mg(2+)-ATPase of relaxed myofibrils. A comparison with Ca(2+)-activated myofibrils and myosin subfragment 1C Herrmann, M Houadjeto, F Travers, et al.Biochimie|January 1, 1975
Ternary solvents to investigate proteins at zub-zero temperaturesF Travers, P Douzou, T Pederson, et al.European Journal of Biochemistry|August 1, 1978
Cryoenzymologic studies on arginine kinase: solvent, temperature and pH effects on the overall reactionF Travers, R Bertrand, G Roseau, et al.Biochemistry|May 6, 1997
Cryoenzymic studies on yeast 3-phosphoglycerate kinase. Attempt to obtain the kinetics of the hinge-bending motionA Geerlof, P P Schmidt, F Travers, et al.Pageof 6