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Load-dependent mechanism of nonmuscle myosin 2
M. Kovács, , P.J. Knight, J.R. Sellers
Published in
2007
PMID: 17548820
Volume: 104
   
Issue: 24
Pages: 9994 - 9999
Abstract
Loads on molecular motors regulate and coordinate their function. In a study that directly measures properties of internally strained myosin 2 heads bound to actin, we find that human nonmuscle myosins 2A and 2B show marked load-dependent changes in kinetics of ADP release but not in nucleotide binding. We show that the ADP release rate constant is increased 4-fold by the assisting load on one head and decreased 5-fold (for 2A) or 12-fold (for 2B) by the resisting load on the other. Thus these myosins, especially 2B, have marked mechanosensitivity of product release. By regulating the actin attachment of myosin heads, this provides a basis for energy-efficient tension maintenance without obstructing cellular contractility driven by other motors such as smooth muscle myosin. Whereas forward load accelerates the cycle of interaction with actin, resistive load increases duty ratio to favor tension maintenance by two-headed attachment. © 2007 by The National Academy of Sciences of the USA.
About the journal
JournalProceedings of the National Academy of Sciences of the United States of America
ISSN00278424