Changes in Actin Structural Transitions Associated with Oxidative Inhibition of Muscle Contraction
- 15 October 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 47 (45) , 11811-11817
- https://doi.org/10.1021/bi801080x
Abstract
We have used transient phosphorescence anisotropy (TPA) to detect changes in actin structural dynamics associated with oxidative inhibition of muscle contraction. Contractility of skinned rabbit psoas muscle fibers was inhibited by treatment with 50 mM H2O2, which induced oxidative modifications in the myosin head and in actin, as previously reported. Using proteins purified from oxidized and unoxidized muscle, we used TPA to measure the effects of weakly (+ATP) and strongly (no ATP) bound myosin heads (S1) on the microsecond dynamics of actin labeled at Cys374 with erythrosine iodoacetamide. Oxidative modification of S1 had no effect on actin dynamics in the absence of ATP (strong binding complex), but restricted the dynamics in the presence of ATP (weakly bound complex). In contrast, oxidative modification of actin did not have a significant effect on the weak-to-strong transitions. Thus, we concluded that (1) the effects of oxidation on the dynamics of actin in the actomyosin complex are predominantly determined by oxidation-induced changes in S1, and (2) changes in weak-to-strong structural transitions in actin and myosin are coupled to each other and are associated with oxidative inhibition of muscle contractility.Keywords
This publication has 24 references indexed in Scilit:
- Age-related decline in actomyosin structure and functionExperimental Gerontology, 2007
- Mechanism of Formation of Actomyosin InterfaceJournal of Molecular Biology, 2007
- Cofilin Increases the Torsional Flexibility and Dynamics of Actin FilamentsJournal of Molecular Biology, 2005
- Structural Dynamics of Actin during Active Interaction with Myosin: Different Effects of Weakly and Strongly Bound Myosin HeadsBiochemistry, 2004
- The oxidation produced by hydrogen peroxide on Ca‐ATP‐G‐actinProtein Science, 2000
- Perturbations of Functional Interactions with Myosin Induce Long-Range Allosteric and Cooperative Structural Changes in ActinBiochemistry, 1997
- Microsecond Rotational Dynamics of Actin: Spectroscopic Detection and Theoretical SimulationJournal of Molecular Biology, 1996
- Microsecond Rotational Dynamics of F-Actin in ActoS1 Filaments during ATP HydrolysisBiochemistry, 1994
- Direct observation of motion of single F-actin filaments in the presence of myosinNature, 1984
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976