首页> 美国卫生研究院文献>Biophysical Journal >Altered kinetics of contraction in skeletal muscle fibers containing a mutant myosin regulatory light chain with reduced divalent cation binding.
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Altered kinetics of contraction in skeletal muscle fibers containing a mutant myosin regulatory light chain with reduced divalent cation binding.

机译:含有突变的肌球蛋白调节性轻链且二价阳离子结合减少的骨骼肌纤维中收缩动力学的改变。

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摘要

We examined the kinetic properties of rabbit skinned skeletal muscle fibers in which the endogenous myosin regulatory light chain (RLC) was partially replaced with a mutant RLC (D47A) containing a point mutation within the Ca2+/Mg2+ binding site that severely reduced its affinity for divalent cations. We found that when approximately 50% of the endogenous RLC was replaced by the mutant, maximum tension declined to approximately 60% of control and the rate constant of active tension redevelopment (ktr) after mechanical disruption of cross-bridges was reduced to approximately 70% of control. This reduction in ktr was not an indirect effect on kinetics due to a reduced number of strongly bound myosin heads, because when the strongly binding cross-bridge analog N-ethylmaleimide-modified myosin subfragment1 (NEM-S1) was added to the fibers, there was no effect upon maximum ktr. Fiber stiffness declined after D47A exchange in a manner indicative of a decrease in the number of strongly bound cross-bridges, suggesting that the force per cross-bridge was not significantly affected by the presence of D47A RLC. In contrast to the effects on ktr, the rate of tension relaxation in steadily activated fibers after flash photolysis of the Ca2+ chelator diazo-2 increased by nearly twofold after D47A exchange. We conclude that the incorporation of the nondivalent cation-binding mutant of myosin RLC decreases the proportion of cycling cross-bridges in a force-generating state by decreasing the rate of formation of force-generating bridges and increasing the rate of detachment. These results suggest that divalent cation binding to myosin RLC plays an important role in modulating the kinetics of cross-bridge attachment and detachment.
机译:我们检查了兔子皮肤的骨骼肌纤维的动力学特性,其中内源性肌球蛋白调节性轻链(RLC)被突变的RLC(D47A)部分取代,该突变RLC在Ca2 + / Mg2 +结合位点内包含一个点突变,该突变严重降低了其对二价的亲和力阳离子。我们发现,当突变体替代约50%的内源性RLC时,最大张力下降至对照的约60%,并且跨桥机械破坏后主动张力再发展的速率常数(ktr)降低至约70%控制。由于减少了牢固结合的肌球蛋白头的数量,因此ktr的降低不是对动力学的间接影响,因为当将具有强结合力的跨桥类似物N-乙基马来酰亚胺修饰的肌球蛋白亚片段1(NEM-S1)添加到纤维中时,对最大ktr没有影响。交换D47A后,纤维刚度下降,这表明强结合的跨桥数量减少,这表明D47A RLC的存在并没有显着影响每个跨桥的作用力。与对ktr的影响相反,在交换D47A后,Ca2 +螯合剂重氮2的快速光解后,稳定活化纤维中的张力松弛速率增加了近两倍。我们得出的结论是,肌球蛋白RLC的非二价阳离子结合突变体的并入通过降低力产生桥的形成速率和增加分离速率,降低了力产生状态下循环交叉桥的比例。这些结果表明,二价阳离子与肌球蛋白RLC的结合在调节跨桥连接和分离的动力学中起着重要作用。

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