The role of the myosin ATPase activity in adaptive thermogenesis by skeletal muscle
Author:
Publisher
Springer Science and Business Media LLC
Subject
Molecular Biology,Structural Biology,Biophysics
Link
http://link.springer.com/content/pdf/10.1007/s12551-011-0044-9.pdf
Reference101 articles.
1. Ababou A, Rostkova E, Mistry S, Le Masurier C, Gautel M, Pfuhl M (2008) Myosin binding protein C positioned to play a key role in regulation of muscle contraction: structure and interactions of domain C1. J Mol Biol 384(3):615–630
2. Al-Khayat HA, Hudson L, Reedy MK, Irving TC, Squire JM (2003) Myosin head configuration in relaxed insect flight muscle: x-ray modeled resting cross-bridges in a pre-powerstroke state are poised for actin binding. Biophys J 85(2):1063–1079
3. Al-Khayat HA, Morris EP, Squire JM (2009) The 7-stranded structure of relaxed scallop muscle myosin filaments: support for a common head configuration in myosin-regulated muscles. J Struct Biol 166(2):183–194
4. Alamo L, Wriggers W, Pinto A, Bartoli F, Salazar L, Zhao FQ, Craig R, Padron R (2008) Three-dimensional reconstruction of tarantula myosin filaments suggests how phosphorylation may regulate myosin activity. J Mol Biol 384(4):780–797
5. Ankrett RJ, Rowe AJ, Cross RA, Kendrick-Jones J, Bagshaw CR (1991) A folded (10 S) conformer of myosin from a striated muscle and its implications for regulation of ATPase activity. J Mol Biol 217(2):323–335
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