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在磷酸盐存在的情况下,收缩骨骼肌纤维中低力横桥的应变敏感性和周转率。

Strain sensitivity and turnover rate of low force cross-bridges in contracting skeletal muscle fibers in the presence of phosphate.

作者信息

Iwamoto H

机构信息

Department of Physiology, School of Medicine, Teikyo University, Tokyo, Japan.

出版信息

Biophys J. 1995 Jan;68(1):243-50. doi: 10.1016/S0006-3495(95)80180-3.

Abstract

Inorganic phosphate (Pi) decreases the isometric tension of skinned skeletal muscle fibers, presumably by increasing the relative fraction of a low force quaternary complex of actin, myosin, ADP, and Pi (A.M.ADP.Pi). At the same time, Pi gives rise to a fast relaxing mechanical component as detected by oscillations at 500 Hz. To characterize the dynamic properties of this A.M.ADP.Pi complex, the effect of Pi on the tension response to stretch was investigated with rabbit psoas fibers. A ramp stretch applied in the presence of 20 mM Pi increased tension more than in the control solution (0 mM Pi) but reduced the fast relaxing component to the control level. Thus, a stretch seems to convert the low force, fast relaxing A.M.ADP.Pi complex to a high force, slow relaxing form. However, the Pi-induced enhancement of the tension response was not observed until the fibers were stretched more than 0.4% of their length, suggesting that a critical cross-bridge extension of approximately 4 nm is required for this conversion. The rate constant of the attachment/detachment of this low force complex was estimated from the velocity dependence of the enhancement. It was approximately 10 s-1, in marked contrast to the A.M.ADP.Pi complex under low salt, relaxed conditions (approximately 10,000 s-1). The enhancement of the tension response was not observed when isometric tension was reduced by lowering free calcium, implying that calcium and Pi affect different steps in the actomyosin ATPase cycle during contraction.

摘要

无机磷酸盐(Pi)会降低经皮处理的骨骼肌纤维的等长张力,推测这是通过增加肌动蛋白、肌球蛋白、ADP和Pi的低力四级复合物(A.M.ADP.Pi)的相对比例来实现的。同时,Pi会产生一个快速松弛的机械成分,这可通过500Hz的振荡检测到。为了表征这种A.M.ADP.Pi复合物的动态特性,我们用兔腰大肌纤维研究了Pi对拉伸张力反应的影响。在20mM Pi存在的情况下施加的斜坡拉伸比在对照溶液(0mM Pi)中增加了更多的张力,但将快速松弛成分降低到了对照水平。因此,拉伸似乎将低力、快速松弛的A.M.ADP.Pi复合物转化为了高力、缓慢松弛的形式。然而,直到纤维被拉伸超过其长度的0.4%才观察到Pi诱导的张力反应增强,这表明这种转化需要大约4nm的临界横桥延伸。根据增强的速度依赖性估计了这种低力复合物的附着/脱离速率常数。它约为10 s-1,这与低盐、松弛条件下的A.M.ADP.Pi复合物(约10,000 s-1)形成了显著对比。当通过降低游离钙来降低等长张力时未观察到张力反应的增强,这意味着钙和Pi在收缩过程中影响肌动球蛋白ATP酶循环的不同步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c8/1281682/31b56813087e/biophysj00067-0248-a.jpg

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