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肌球蛋白必需轻链同工型调节由非磷酸化横桥推动的缩短速度。

Myosin essential light chain isoforms modulate the velocity of shortening propelled by nonphosphorylated cross-bridges.

作者信息

Matthew J D, Khromov A S, Trybus K M, Somlyo A P, Somlyo A V

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, Virginia 22906-0011, USA.

出版信息

J Biol Chem. 1998 Nov 20;273(47):31289-96. doi: 10.1074/jbc.273.47.31289.

Abstract

The differential effects of essential light chain isoforms (LC17a and LC17b) on the mechanical properties of smooth muscle were determined by exchanging recombinant for endogenous LC17 in permeabilized smooth muscle treated with trifluoperazine (TFP). Co-precipitation with endogenous myosin heavy chain verified that 40-60% of endogenous LC17a could be exchanged for recombinant LC17a or LC17b. Upon addition of MgATP in Ca2+-free solution, recombinant LC17 exchange induced slow contractions unaccompanied by regulatory light chain (RLC) phosphorylation only in TFP-treated, but not in untreated, permeabilized smooth muscle; the shortening velocity and rate of force development were approximately 1.5 and 2 times faster, respectively, in response to LC17a than LC17b. Additional incubation with recombinant, thiophosphorylated RLC increased the shortening velocity, independent of the LC17 isoform exchanged. The LC17-induced contractions of TFP-treated muscles were abolished by prior addition of nonphosphorylated RLC. We suggest that LC17 stiffens the lever arm of myosin and, in the absence of regulation by RLC, permits cross-bridge cycling without requiring RLC phosphorylation. Our results are compatible with nonphosphorylated RLC acting as a repressor and with LC17 isoforms modulating the MgADP affinity and, consequently, rate of cooperative cycling of nonphosphorylated cross-bridges.

摘要

通过用三氟拉嗪(TFP)处理的通透平滑肌中用重组体替换内源性LC17,确定了必需轻链同工型(LC17a和LC17b)对平滑肌机械性能的不同影响。与内源性肌球蛋白重链的共沉淀证实,40 - 60%的内源性LC17a可以被重组LC17a或LC17b替换。在无钙溶液中加入MgATP后,重组LC17交换仅在TFP处理而非未处理的通透平滑肌中诱导缓慢收缩,且不伴有调节轻链(RLC)磷酸化;响应LC17a时的缩短速度和力发展速率分别比LC17b快约1.5倍和2倍。与重组的硫代磷酸化RLC进一步孵育可增加缩短速度,与交换的LC17同工型无关。预先加入非磷酸化RLC可消除TFP处理肌肉中LC17诱导的收缩。我们认为LC17使肌球蛋白的杠杆臂变硬,并且在没有RLC调节的情况下,允许横桥循环而无需RLC磷酸化。我们的结果与非磷酸化RLC作为阻遏物以及LC17同工型调节MgADP亲和力并因此调节非磷酸化横桥协同循环速率的观点一致。

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