Orientation and Mobility of Actin in Different Intermediate States of the ATP Hydrolysis Cycle
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[1] A. Wrzosek,et al. Effect of Nucleotides on the Orientation and Mobility of Myosin Subfragment-1 in Ghost Muscle Fiber , 2005, Biochemistry (Moscow).
[2] C G dos Remedios,et al. Fluorescence depolarization of actin filaments in reconstructed myofibers: the effect of S1 or pPDM-S1 on movements of distinct areas of actin. , 2004, Biophysical journal.
[3] T. Burghardt,et al. Changes in orientation of actin during contraction of muscle. , 2004, Biophysical journal.
[4] N. Volkmann,et al. Actomyosin: law and order in motility. , 2000, Current opinion in cell biology.
[5] E. Egelman,et al. Intrastrand cross-linked actin between Gln-41 and Cys-374. III. Inhibition of motion and force generation with myosin. , 1998, Biochemistry.
[6] R. Cooke,et al. Actomyosin interaction in striated muscle. , 1997, Physiological reviews.
[7] D. D. Thomas,et al. Orientation of intermediate nucleotide states of indane dione spin-labeled myosin heads in muscle fibers. , 1996, Biophysical journal.
[8] E. Egelman,et al. Allostery, cooperativity, and different structural states in F-actin. , 1995, Journal of structural biology.
[9] H E Huxley,et al. X-ray diffraction measurements of the extensibility of actin and myosin filaments in contracting muscle. , 1994, Biophysical journal.
[10] Y Ueno,et al. X-ray diffraction evidence for the extensibility of actin and myosin filaments during muscle contraction. , 1994, Biophysical journal.
[11] K C Holmes,et al. Refinement of the F-actin model against X-ray fiber diffraction data by the use of a directed mutation algorithm. , 1993, Journal of molecular biology.
[12] B. Brenner,et al. Effect of Ca2+ on weak cross-bridge interaction with actin in the presence of adenosine 5'-[gamma-thio]triphosphate). , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[13] I. Ka̧kol,et al. Conformational changes of contractile proteins accompanying modulation of skeletal muscle contraction. Polarized microfluorometry investigations. , 1991, General physiology and biophysics.
[14] M. Geeves. The dynamics of actin and myosin association and the crossbridge model of muscle contraction. , 1991, The Biochemical journal.
[15] T. Yanagida,et al. Inhibition of sliding movement of F-actin by crosslinking emphasizes the role of actin structure in the mechanism of motility. , 1990, Journal of molecular biology.
[16] E. Nowak,et al. Caldesmon weakens the bonding between myosin heads and actin in ghost fibers. , 1989, Biochimica et biophysica acta.
[17] Y. Goldman,et al. Relaxation of muscle fibers with adenosine 5'-[gamma-thio]triphosphate (ATP[gamma S]) and by laser photolysis of caged ATP[gamma S]: evidence for Ca2+-dependent affinity of rapidly detaching zero-force cross-bridges. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[18] E. Eisenberg,et al. Stiffness of skinned rabbit psoas fibers in MgATP and MgPPi solution. , 1986, Biophysical journal.
[19] T. L. Hill,et al. Muscle contraction and free energy transduction in biological systems. , 1985, Science.
[20] F. Oosawa,et al. Studies on conformation of F-actin in muscle fibers in the relaxed state, rigor, and during contraction using fluorescent phalloidin , 1983, The Journal of cell biology.
[21] N. Gusev,et al. Effect of troponin-tropomyosin complex and Ca2+ on conformational changes in F-actin induced by myosin subfragment-1. , 1983, European journal of biochemistry.
[22] E. Eisenberg,et al. Crosslinked myosin subfragment 1: a stable analogue of the subfragment-1.ATP complex. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[23] Steven B Marston,et al. The rates of formation and dissociation of actin-myosin complexes. Effects of solvent, temperature, nucleotide binding and head-head interactions. , 1982, The Biochemical journal.
[24] E. Eisenberg,et al. Mechanism of action of troponin . tropomyosin. Inhibition of actomyosin ATPase activity without inhibition of myosin binding to actin. , 1981, The Journal of biological chemistry.
[25] E. Eisenberg,et al. Cooperative binding of myosin subfragment-1 to the actin-troponin-tropomyosin complex. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[26] R. Goody,et al. Stereochemical aspects of the interaction of myosin and actomyosin with nucleotides , 1980, Journal of Muscle Research & Cell Motility.
[27] E. Eisenberg,et al. Mechanism of actomyosin adenosine triphosphatase. Evidence that adenosine 5'-triphosphate hydrolysis can occur without dissociation of the actomyosin complex. , 1979, Biochemistry.
[28] F. Oosawa,et al. Polarized fluorescence from epsilon-ADP incorporated into F-actin in a myosin-free single fiber: conformation of F-actin and changes induced in it by heavy meromyosin. , 1978, Journal of molecular biology.
[29] S. Lowey,et al. Interaction of myosin subfragments with F-actin. , 1978, Biochemistry.
[30] A. Weeds,et al. Studies on the chymotryptic digestion of myosin. Effects of divalent cations on proteolytic susceptibility. , 1977, Journal of molecular biology.
[31] E. Taylor,et al. Energetics and mechanism of actomyosin adenosine triphosphatase. , 1976, Biochemistry.
[32] Steven B Marston,et al. The dissociation constant of the actin-heavy meromyosin subfragment-1 complex. , 1975, Biochemistry.
[33] R. Mendelson,et al. Polarization from a helix of fluorophores and its relation to that obtained from muscle. , 1975, Biophysical journal.
[34] Clive R. Bagshaw,et al. The characterization of myosin-product complexes and of product-release steps during the magnesium ion-dependent adenosine triphosphatase reaction. , 1974, The Biochemical journal.
[35] I. Rozanov,et al. [Study of structural changes in myosin and actin filaments in muscle fiber by the polarization method of ultraviolet fluorescence microscopy]. , 1974, Tsitologiia.
[36] A. Weber,et al. Cooperation within actin filament in vertebrate skeletal muscle. , 1972, Nature: New biology.
[37] E. Taylor,et al. Mechanism of adenosine triphosphate hydrolysis by actomyosin. , 1971, Biochemistry.
[38] U. K. Laemmli,et al. Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 , 1970, Nature.
[39] A. Szent-Gyorgyi. Free-energy relations and contraction of actomyosin. , 1949, The Biological bulletin.
[40] Y. Borovikov. Conformational changes of contractile proteins and their role in muscle contraction. , 1999, International review of cytology.
[41] E. Reisler. [10] Sulfhydryl modification and labeling of myosin , 1982 .
[42] J. Rabinowitz,et al. Studies on a glucuronolactone decarboxylase. , 1957, Biochimica et biophysica acta.