The On–Off Switch in Regulated Myosins: Different Triggers but Related Mechanisms

In regulated myosin, motor and enzymatic activities are toggled between the on-state and off-state by a switch located on its lever arm domain, here called the regulatory domain (RD). This region consists of a long α-helical “heavy chain” stabilized by a “regulatory” light chain (RLC) and an “essent...

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Veröffentlicht in:Journal of molecular biology 2009-12, Vol.394 (3), p.496-505
Hauptverfasser: Himmel, Daniel M., Mui, Suet, O’Neall-Hennessey, Elizabeth, Szent-Györgyi, Andrew G., Cohen, Carolyn
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Sprache:eng
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Zusammenfassung:In regulated myosin, motor and enzymatic activities are toggled between the on-state and off-state by a switch located on its lever arm domain, here called the regulatory domain (RD). This region consists of a long α-helical “heavy chain” stabilized by a “regulatory” light chain (RLC) and an “essential” light chain (ELC). The on-state is activated by phosphorylation of the RLC of vertebrate smooth muscle RD or by direct binding of Ca 2+ to the ELC of molluscan RD. Crystal structures are available only for the molluscan RD. To understand in more detail the pathway between the on-state and the off-state, we have now also determined the crystal structure of a molluscan (scallop) RD in the absence of Ca 2+. Our results indicate that loss of Ca 2+ abolishes most of the interactions between the light chains and may increase the flexibility of the RD heavy chain. We propose that disruption of critical links with the C-lobe of the RLC is the key event initiating the off-state in both smooth muscle myosins and molluscan myosins.
ISSN:0022-2836
1089-8638
DOI:10.1016/j.jmb.2009.09.035