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H C Cheung

Showing results (81-90 of 138) with videos related to

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The Journal of Biological Chemistry|January 12, 1996
Kinetic studies of calcium binding to the regulatory site of troponin C from cardiac muscleW Dong, S S Rosenfeld, C K Wang, et al.
Behavioral and Brain Functions : BBF|December 15, 2012
Extinction learning deficit in a rodent model of attention-deficit hyperactivity disorderRyan J Brackney, Timothy H C Cheung, Katrina Herbst, et al.
Biochemistry|October 28, 1997
Effects of protein kinase A phosphorylation on signaling between cardiac troponin I and the N-terminal domain of cardiac troponin CM Chandra, W J Dong, B S Pan, et al.
The Journal of Biological Chemistry|April 19, 1996
Equilibrium studies of kinesin-nucleotide intermediatesS S Rosenfeld, B Rener, J J Correia, et al.
Biochemistry|June 3, 1997
Phosphorylation-induced distance change in a cardiac muscle troponin I mutantW J Dong, M Chandra, J Xing, et al.
The Journal of Biological Chemistry|June 15, 2000
Kinesin has three nucleotide-dependent conformations. Implications for strain-dependent releaseJ Xing, W Wriggers, G M Jefferson, et al.
The Journal of Biological Chemistry|August 1, 1997
A kinetic model for the binding of Ca2+ to the regulatory site of troponin from cardiac muscleW J Dong, C K Wang, A M Gordon, et al.
Biophysical Chemistry|April 1, 1991
Conformational flexibility of the Cys 697-Cys 707 segment of myosin subfragment-1. Distance distributions by frequency-domain fluorometryH C Cheung, I Gryczynski, H Malak, et al.
The Journal of Biological Chemistry|October 24, 1998
Structural and kinetic studies of phosphorylation-dependent regulation in smooth muscle myosinS S Rosenfeld, J Xing, H C Cheung, et al.
Biophysical Journal|December 1, 1996
Fluorescence spectral properties of troponin C mutant F22W with one-, two-, and three-photon excitationI Gryczynski, H Malak, J R Lakowicz, et al.
Pageof 14

Showing results (81-90 of 138) with videos related to

Sort By:
Pageof 14
The Journal of Biological Chemistry|January 12, 1996
Kinetic studies of calcium binding to the regulatory site of troponin C from cardiac muscleW Dong, S S Rosenfeld, C K Wang, et al.
Behavioral and Brain Functions : BBF|December 15, 2012
Extinction learning deficit in a rodent model of attention-deficit hyperactivity disorderRyan J Brackney, Timothy H C Cheung, Katrina Herbst, et al.
Biochemistry|October 28, 1997
Effects of protein kinase A phosphorylation on signaling between cardiac troponin I and the N-terminal domain of cardiac troponin CM Chandra, W J Dong, B S Pan, et al.
The Journal of Biological Chemistry|April 19, 1996
Equilibrium studies of kinesin-nucleotide intermediatesS S Rosenfeld, B Rener, J J Correia, et al.
Biochemistry|June 3, 1997
Phosphorylation-induced distance change in a cardiac muscle troponin I mutantW J Dong, M Chandra, J Xing, et al.
The Journal of Biological Chemistry|June 15, 2000
Kinesin has three nucleotide-dependent conformations. Implications for strain-dependent releaseJ Xing, W Wriggers, G M Jefferson, et al.
The Journal of Biological Chemistry|August 1, 1997
A kinetic model for the binding of Ca2+ to the regulatory site of troponin from cardiac muscleW J Dong, C K Wang, A M Gordon, et al.
Biophysical Chemistry|April 1, 1991
Conformational flexibility of the Cys 697-Cys 707 segment of myosin subfragment-1. Distance distributions by frequency-domain fluorometryH C Cheung, I Gryczynski, H Malak, et al.
The Journal of Biological Chemistry|October 24, 1998
Structural and kinetic studies of phosphorylation-dependent regulation in smooth muscle myosinS S Rosenfeld, J Xing, H C Cheung, et al.
Biophysical Journal|December 1, 1996
Fluorescence spectral properties of troponin C mutant F22W with one-, two-, and three-photon excitationI Gryczynski, H Malak, J R Lakowicz, et al.
Pageof 14