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温度和无机离子对肠平滑肌微粒体中钙积累的影响。

Effects of temperature and inorganic ions on calcium accumulation in microsomes from intestinal smooth muscle.

作者信息

Hurwitz L, Debbas G, Little S

出版信息

Mol Cell Biochem. 1975 Jul 31;8(1):31-41. doi: 10.1007/BF01731647.

Abstract

Energy dependent calcium binding in microsomal vesicles from the longitudinal smooth muscle of the guinea pig intestine was investigated at two different temperatures (30 degrees C and 10 degrees C) and in the absence and presence of CdCl2, BaCl2 and MnCl2. The investigation was carried out to determine whether the effects of temperature and the effects of the divalent ions on microsomal calcium binding could be correlated with the effects of these interventions on the mechanical activity of the intact longitudinal fibers. A reduction in temperature from 30 degrees C to 10 degrees C inhibited both the uptake of calcium into the microsomes and the rate of release of calcium ions from the microsomes to the external medium. This exchange in temperature also slowed the rate of relaxation of the intact longitudinal muscle after it had been induced to contract with acetylcholine and subsequently allowed to relax by removing calcium ions from the bathing medium and adding 1 X 10(-3) M EGTA. The presence of CdCl2, like the reduction in temperature, decreased the uptake of calcium into the microsomal vesicles. However, the release of calcium from the microsomes was accelerated. BaCl2, produced the same effects as did CdCl2 on the uptake of calcium into microsomes but to a lesser extent. It had very little effect on the release of calcium ions from the microsomes. MnCl2 had no significant effects on either the uptake or release of calcium ions in the microsomal preparation. Both CdCl2 and MnCl2 exerted an inhibitory action on acetylcholine-induced contractile responses of the intact longitudinal fibers; whereas BaCl2 served to initiate a contractile response in the smooth muscle fibers. Thus, it would appear that the effects of a temperature change on microsomal calcium binding and on mechanical activity in intact fibers can be correlated; but the effects of CdCl2, BaCl2 and MnCl2 on these two cellular processes do not follow any consistent pattern.

摘要

在30摄氏度和10摄氏度这两种不同温度下,且分别在不存在和存在氯化镉(CdCl2)、氯化钡(BaCl2)和氯化锰(MnCl2)的情况下,对豚鼠肠道纵行平滑肌微粒体囊泡中能量依赖性钙结合进行了研究。开展该研究是为了确定温度影响以及二价离子对微粒体钙结合的影响是否与这些干预措施对完整纵行纤维机械活性的影响相关。温度从30摄氏度降至10摄氏度,既抑制了钙摄入微粒体,也抑制了钙离子从微粒体释放到外部介质的速率。这种温度变化还减缓了完整纵行肌肉在被乙酰胆碱诱导收缩,随后通过从浴液中去除钙离子并添加1×10⁻³ M乙二醇双乙醚二胺四乙酸(EGTA)而使其松弛后的松弛速率。与温度降低一样,氯化镉的存在减少了钙摄入微粒体囊泡。然而,微粒体中钙的释放加速。氯化钡对钙摄入微粒体的影响与氯化镉相同,但程度较小。它对微粒体中钙离子的释放影响很小。氯化锰对微粒体制备中钙离子的摄入或释放均无显著影响。氯化镉和氯化锰均对完整纵行纤维的乙酰胆碱诱导的收缩反应产生抑制作用;而氯化钡则在平滑肌纤维中引发收缩反应。因此,温度变化对微粒体钙结合以及完整纤维机械活性的影响似乎是相关的;但氯化镉、氯化钡和氯化锰对这两个细胞过程的影响并不遵循任何一致的模式。

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