Direct Regulation of Striated Muscle Myosins by Nitric Oxide and Endogenous Nitrosothiols

被引:59
作者
Evangelista, Alicia M. [1 ]
Rao, Vijay S. [1 ]
Filo, Ashley R. [1 ]
Marozkina, Nadzeya V. [2 ]
Doctor, Allan [3 ]
Jones, David R.
Gaston, Benjamin [2 ]
Guilford, William H. [1 ]
机构
[1] Univ Virginia, Dept Biomed Engn, Charlottesville, VA 22903 USA
[2] Univ Virginia, Dept Pediat, Charlottesville, VA USA
[3] Washington Univ, Dept Pediat, St Louis, MO 63130 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
SKELETAL-MUSCLE; IN-VITRO; ACTIN-FILAMENTS; FORCE; MOTILITY; PURIFICATION; PROTEINS; ASSAY;
D O I
10.1371/journal.pone.0011209
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
Background: Nitric oxide (NO) has long been recognized to affect muscle contraction [1], both through activation of guanylyl cyclase and through modification of cysteines in proteins to yield S-nitrosothiols. While NO affects the contractile apparatus directly, the identities of the target myofibrillar proteins remain unknown. Here we report that nitrogen oxides directly regulate striated muscle myosins. Principal Findings: Exposure of skeletal and cardiac myosins to physiological concentrations of nitrogen oxides, including the endogenous nitrosothiol S-nitroso-L-cysteine, reduced the velocity of actin filaments over myosin in a dose-dependent and oxygen-dependent manner, caused a doubling of force as measured in a laser trap transducer, and caused S-nitrosylation of cysteines in the myosin heavy chain. These biomechanical effects were not observed in response to S-nitroso-D-cysteine, demonstrating specificity for the naturally occurring isomer. Both myosin heavy chain isoforms in rats and cardiac myosin heavy chain from human were S-nitrosylated in vivo. Significance: These data show that nitrosylation signaling acts as a molecular "gear shift'' for myosin-an altogether novel mechanism by which striated muscle and cellular biomechanics may be regulated.
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页数:7
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