Alteration of myosin cross bridges by phosphorylation of myosin-binding protein C in cardiac muscle.
- 20 August 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (17) , 8999-9003
- https://doi.org/10.1073/pnas.93.17.8999
Abstract
In addition to the contractile proteins actin and myosin, contractile filaments of striated muscle contain other proteins that are important for regulating the structure and the interaction of the two force-generating proteins. In the thin filaments, troponin and tropomyosin form a Ca-sensitive trigger that activates normal contraction when intracellular Ca is elevated. In the thick filament, there are several myosin-binding proteins whose functions are unclear. Among these is the myosin-binding protein C (MBP-C). The cardiac isoform contains four phosphorylation sites under the control of cAMP and calmodulin-regulated kinases, whereas the skeletal isoform contains only one such site, suggesting that phosphorylation in cardiac muscle has a specific regulatory function. We isolated natural thick filaments from cardiac muscle and, using electron microscopy and optical diffraction, determined the effect of phosphorylation of MBP-C on cross bridges. The thickness of the filaments that had been treated with protein kinase A was increased where cross bridges were present. No change occurred in the central bare zone that is devoid of cross bridges. The intensity of the reflections along the 43-nm layer line, which is primarily due to the helical array of cross bridges, was increased, and the distance of the first peak reflection from the meridian along the 43-nm layer line was decreased. The results indicate that phosphorylation of MBP-C (i) extends the cross bridges from the backbone of the filament and (ii) increases their degree of order and/or alters their orientation. These changes could alter rate constants for attachment to and detachment from the thin filament and thereby modify force production in activated cardiac muscle.Keywords
This publication has 21 references indexed in Scilit:
- Tilting of the light-chain region of myosin during step length changes and active force generation in skeletal muscleNature, 1995
- Beta-adrenergic receptor stimulation increases unloaded shortening velocity of skinned single ventricular myocytes from rats.Circulation Research, 1994
- Three-dimensional structure of myosin subfragment-1: a molecular motorScience, 1993
- Phosphorylation of skeletal and cardiac muscle C-proteins by the catalytic subunit of cAMP-dependent protein kinaseBiochemistry and Cell Biology, 1986
- Effects of phosphorylated and unphosphorylated C-protein on cardiac actomyosin ATPaseJournal of Molecular Biology, 1985
- Frog skeletal muscle thick filaments are three-stranded.The Journal of cell biology, 1983
- An electron microscopic and optical diffraction analysis of the structure of Limulus telson muscle thick filaments.The Journal of cell biology, 1982
- X-Ray Diffraction Studies of the HeartAnnual Review of Biophysics and Bioengineering, 1980
- X-ray diffraction patterns from mammalian heart muscleJournal of Molecular Biology, 1974
- The low-angle X-ray diagram of vertebrate striated muscle and its behaviour during contraction and rigorJournal of Molecular Biology, 1967