4.7 Article

Actin Filament Dynamics in the Actomyosin VI Complex Is Regulated Allosterically by Calcium-Calmodulin Light Chain

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 413, 期 3, 页码 584-592

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2011.08.058

关键词

actin; myosin VI; calmodulin; cooperativity; phosphorescence spectroscopy

资金

  1. National Institutes of Health [AR32961, AG26160, GM071688, GM071688-S1, GM097348, F31 DC009143]
  2. American Heart Association [0940075N, 09PRE2230014, 0655849T]
  3. National Science Foundation [MCB-0546353]
  4. Yale Institute for Nanoscience and Quantum Engineering

向作者/读者索取更多资源

The contractile and enzymatic activities of myosin VI are regulated by calcium binding to associated calmodulin (CaM) light chains. We have used transient phosphorescence anisotropy to monitor the microsecond rotational dynamics of erythrosin-iodoacetamide-labeled actin with strongly bound myosin VI (MVI) and to evaluate the effect of MVI-bound CaM light chain on actin filament dynamics. MVI binding lowers the amplitude but accelerates actin filament microsecond dynamics in a Ca(2+)- and CaM-dependent manner, as indicated from an increase in the final anisotropy and a decrease in the correlation time of transient phosphorescence anisotropy decays. MW with bound apo-CaM or Ca(2+)-CaM weakly affects actin filament microsecond dynamics, relative to other myosins (e.g., muscle myosin II and myosin Va). CaM dissociation from bound MVI damps filament rotational dynamics (i.e., increases the torsional rigidity), such that the perturbation is comparable to that induced by other characterized myosins. Analysis of individual actin filament shape fluctuations imaged by fluorescence microscopy reveals a correlated effect on filament bending mechanics. These data support a model in which Ca(2+)-dependent CaM binding to the IQ domain of MVI is linked to an allosteric reorganization of the actin binding site(s), which alters the structural dynamics and the mechanical rigidity of actin filaments. Such modulation of filament dynamics may contribute to the Ca(2+)- and CaM-dependent regulation of myosin VI motility and ATP utilization. (C) 2011 Elsevier Ltd. All rights reserved..

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