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低离子强度下松弛肌肉中横桥附着的证据。

Evidence for cross-bridge attachment in relaxed muscle at low ionic strength.

作者信息

Brenner B, Schoenberg M, Chalovich J M, Greene L E, Eisenberg E

出版信息

Proc Natl Acad Sci U S A. 1982 Dec;79(23):7288-91. doi: 10.1073/pnas.79.23.7288.

Abstract

In vitro at low ionic strength (mu = 0.02 M) and 5 degrees C, myosin subfragment-1 shows significant binding to regulated actin in the presence of ATP, independent of the concentration of free Ca2+. Under the same conditions, single skinned rabbit psoas muscle fibers develop force only in the presence of Ca2+ and are relaxed in its absence. However, the stiffness, measured with very rapid stretches (0.5% of muscle length in 0.1 ms), is high even when the fibers are relaxed. This "rapid stiffness" of the resting muscle is sensitive to ionic strength, becoming small at normal ionic strength (mu = 0.17 M). At low ionic strength, the rapid stiffness is approximately proportional to the overlap between the actin and myosin filaments. At zero overlap (sarcomere length = 3.8 microns), the stiffness is less than 20% of the value measured at full overlap. This remaining 20% is relatively insensitive to ionic strength, like the passive resting tension, and it may in fact be due to the structures responsible for the resting tension. Thus, both in vitro binding and the effect of overlap on rapid stiffness measurements in fibers suggest that cross-bridges are attached to actin in relaxed muscle at low ionic strength.

摘要

在体外,于低离子强度(μ = 0.02 M)和5摄氏度条件下,肌球蛋白亚片段-1在ATP存在时显示出与调节型肌动蛋白的显著结合,且与游离Ca2+的浓度无关。在相同条件下,单根剥除肌膜的兔腰大肌纤维仅在Ca2+存在时产生张力,在其不存在时则松弛。然而,用非常快速的拉伸(在0.1毫秒内拉伸肌肉长度的0.5%)测量时,即使纤维处于松弛状态,其刚度也很高。静息肌肉的这种“快速刚度”对离子强度敏感,在正常离子强度(μ = 0.17 M)时变小。在低离子强度下,快速刚度大约与肌动蛋白和肌球蛋白丝之间的重叠程度成正比。在零重叠(肌节长度 = 3.8微米)时,刚度小于完全重叠时测量值的20%。这剩余的20%对离子强度相对不敏感,如同被动静息张力一样,实际上它可能是由负责静息张力的结构所致。因此,体外结合以及重叠对纤维快速刚度测量的影响均表明,在低离子强度下,静息肌肉中的横桥附着于肌动蛋白上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a69/347324/89a95af80307/pnas00462-0215-a.jpg

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