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化学去膜软体动物平滑肌的强直收缩与舒张控制

Tonic contraction and the control of relaxation in a chemically skinned molluscan smooth muscle.

作者信息

Cornelius F

出版信息

J Gen Physiol. 1982 May;79(5):821-34. doi: 10.1085/jgp.79.5.821.

Abstract

The same functional states that characterize the living anterior byssus retractor muscle (ABRM) from Mytilus edulis can be initiated in the saponin-treated (chemically skinned) muscle preparation under controlled biochemical conditions. A tonic contraction was induced if the concentration of free Ca2+ was above approximately 10(7) M in the presence of Mg2+ and ATP. Maximum tension development was achieved at a Ca2+ concentration of approximately 10(4) M. Within these Ca2+ concentrations tension was always associated with the presence of 'active state," as indicated by a high recovery of tension after a quick release in muscle length. Tonic tension, and the associated active state was maintained for hours during these conditions irrespective of variations in both ionic strength and pH. Reduction of the Ca2+ concentration to below threshold for tension initiation during a tonic contraction immediately switched off the active state and relaxation of the muscle preparation resulted. However, the rate of relaxation was extremely low, leaving a substantial fraction of tension in the absence of active state. Both 5-hydroxytryptamine (5-HT) and cAMP accelerated this slow relaxation in the absence of Ca2+. Thus, this state was considered equivalent to the 'catch state" in the living ABRM. In the presence of Ca2+ concentrations above 10(7) M, cAMP did not affect either the maximum tension developed or the Ca2+ sensitivity of the chemically skinned muscle preparation.

摘要

在可控的生化条件下,用皂角苷处理(化学去膜)的贻贝前足丝牵缩肌(ABRM)制备物中,可以引发与活体ABRM相同的功能状态。如果在存在Mg2+和ATP的情况下,游离Ca2+浓度高于约10^(-7) M,就会诱导强直性收缩。在Ca2+浓度约为10^(-4) M时达到最大张力发展。在这些Ca2+浓度范围内,张力总是与“活性状态”相关,如肌肉长度快速释放后张力的高恢复所表明的那样。在这些条件下,强直性张力以及相关的活性状态会持续数小时,而与离子强度和pH的变化无关。在强直性收缩期间,将Ca2+浓度降低到引发张力的阈值以下会立即关闭活性状态,导致肌肉制备物松弛。然而,松弛速率极低,在没有活性状态的情况下仍有相当一部分张力存在。5-羟色胺(5-HT)和cAMP在没有Ca2+的情况下都会加速这种缓慢的松弛。因此,这种状态被认为等同于活体ABRM中的“捕捉状态”。在Ca2+浓度高于10^(-7) M时,cAMP既不影响化学去膜肌肉制备物产生的最大张力,也不影响其对Ca2+的敏感性。

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