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通过光解释放三磷酸腺苷使处于强直收缩状态的化学去表皮豚鼠结肠带平滑肌松弛。

Relaxation of chemically skinned guinea pig taenia coli smooth muscle from rigor by photolytic release of adenosine-5'-triphosphate.

作者信息

Arner A, Goody R S, Rapp G, Rüegg J C

机构信息

Physiologisches Institut der Universität Heidelberg, F.R.G.

出版信息

J Muscle Res Cell Motil. 1987 Oct;8(5):377-85. doi: 10.1007/BF01578427.

Abstract

The mechanical events following release of ATP from P3-1-(2-nitro)phenylethyladenosine-5'-triphosphate (caged-ATP) in skinned guinea pig taenia coli smooth muscle in rigor were investigated. A rigor force of about 25-35% of the maximal active force was obtained by removing ATP at the plateau of a maximal active contraction. In the rigor solution free-Mg2+ was 2 mM, ionic strength 90 mM and pH 7.0. When caged-ATP (12.5 mM) was diffused into the preparation there was no change in the rigor force. Photolytic production of about 2 mM ATP was achieved with a xenon flash lamp. Following illumination, force decreased with an approximate initial rate constant of 0.7 s-1. The rate of relaxation was increased in the presence of inorganic phosphate (at 3 mM: 1.3 s-1; 10 mM: 2.2 s-1). At higher Mg2+ concentrations the rate of relaxation was slower (5 mM: 0.2 s-1) and at lower concentrations the rate was faster (0.5 mM: 1.2 s-1). An increased rate of relaxation was observed when ionic strength was increased to 150 mM (2.2 s-1). Phosphate increased the rate of relaxation at the different levels of Mg2+ (0.5-10 mM) and ionic strength (90, 150 mM). In preparations shortened (by 1-3%) to give reduced rigor force, a small transient increase in tension was recorded after ATP release. In comparison to the rates of ATP-induced dissociation of actomyosin in solution, reported in the literature, the rate of relaxation from rigor is slower. This may reflect a slow rigor cross-bridge dissociation or mechanical interactions not associated with cross-bridges in the muscle fibre.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了在强直状态下,从P3-1-(2-硝基)苯乙基腺苷-5'-三磷酸(笼锁ATP)释放ATP后,豚鼠结肠带平滑肌的力学事件。通过在最大主动收缩的平台期去除ATP,获得了约为最大主动力25%-35%的强直力。在强直溶液中,游离Mg2+为2 mM,离子强度为90 mM,pH值为7.0。当笼锁ATP(12.5 mM)扩散到标本中时,强直力没有变化。用氙闪光灯实现了约2 mM ATP的光解产生。光照后,力以约0.7 s-1的近似初始速率常数下降。在无机磷酸盐存在下,松弛速率增加(3 mM时为1.3 s-1;10 mM时为2.2 s-1)。在较高Mg2+浓度下,松弛速率较慢(5 mM时为0.2 s-1),在较低浓度下,速率较快(0.5 mM时为1.2 s-1)。当离子强度增加到150 mM时,观察到松弛速率增加(2.2 s-1)。磷酸盐在不同的Mg2+水平(0.5-10 mM)和离子强度(90、150 mM)下增加了松弛速率。在缩短(1%-3%)以降低强直力的标本中,ATP释放后记录到张力有一个小的短暂增加。与文献报道的溶液中ATP诱导的肌动球蛋白解离速率相比,从强直状态松弛的速率较慢。这可能反映了强直横桥解离缓慢或与肌纤维中的横桥无关的力学相互作用。(摘要截断于250字)

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