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脊椎动物骨骼肌肌球蛋白中亚基相互作用的温度和离子强度依赖性。哺乳动物和鸟类肌球蛋白的碱性轻链与重链之间相互作用的比较。

Temperature and ionic strength dependence of the subunit interactions in vertebrate skeletal myosin. A comparison of the interaction between the alkali light and heavy chains of mammalian and avian myosin.

作者信息

Zaager S, Burke M

机构信息

Department of Biology, Case Western Reserve University, Cleveland, Ohio 44106.

出版信息

J Biol Chem. 1988 Sep 25;263(27):13891-5.

PMID:3417680
Abstract

The stability of the interaction of A1 in myosin and subfragment 1 isolated from fast-twitch mammalian and avian muscles with respect to temperature and ionic strength has been examined. This was done by determining the extent of exchange of the endogenous free A1 light chain into these proteins from the two species. Whereas the extent of exchange at 37 degrees C into mammalian S1, occurring after 60 min, is about 80% of the theoretically expected amount at physiological ionic conditions, the level of exchange observed with the avian S1 is significantly lower. However, close to the theoretical limit is observed for the avian S1 when exchange is done at 43 degrees C which is close to average avian body temperature. A similar dependence with temperature is observed in the case of exchanges into avian myosin. In the case of mammalian myosin, 50% of the theoretical exchange is observed at 37 degrees C under physiological ionic strength, whereas the level of exchange observed under these conditions with the avian protein is much lower in agreement with recent observations (Waller, G. S., and Lowey, S. (1985) J. Biol. Chem. 260, 14368-14373; Pastra-Landis, S. C., and Lowey, S. (1986) J. Biol. Chem. 261, 14811-14816). If, however, the exchanges are done at 43 degrees C in physiological ionic strength, significant extents of exchange can be observed in avian myosin. These results suggest that at physiological ionic and temperature conditions relevant for the source of myosin and S1 being investigated, the alkali light chains are in dynamic equilibrium between free and heavy chain associated states. Therefore, the failure to observe alkali light chain exchange in avian myosin at 37 degrees C appears to be related to the higher temperature stability of its interaction with the heavy chain.

摘要

已经研究了从快速收缩的哺乳动物和鸟类肌肉中分离出的肌球蛋白中的A1与亚片段1之间相互作用在温度和离子强度方面的稳定性。这是通过测定内源性游离A1轻链从这两个物种交换到这些蛋白质中的程度来完成的。在37℃下,60分钟后发生的向哺乳动物S1的交换程度,在生理离子条件下约为理论预期量的80%,而观察到的鸟类S1的交换水平则明显较低。然而,当在接近鸟类平均体温的43℃下进行交换时,鸟类S1的交换接近理论极限。在向鸟类肌球蛋白的交换中也观察到了类似的温度依赖性。在哺乳动物肌球蛋白的情况下,在生理离子强度下,37℃时观察到50%的理论交换,而在这些条件下观察到的鸟类蛋白质的交换水平则低得多,这与最近的观察结果一致(Waller, G. S., and Lowey, S. (1985) J. Biol. Chem. 260, 14368 - 14373; Pastra - Landis, S. C., and Lowey, S. (1986) J. Biol. Chem. 261, 14811 - 14816)。然而,如果在生理离子强度下于43℃进行交换,则在鸟类肌球蛋白中可以观察到显著的交换程度。这些结果表明,在与所研究的肌球蛋白和S1来源相关的生理离子和温度条件下,碱性轻链在游离态和重链结合态之间处于动态平衡。因此,在37℃下未观察到鸟类肌球蛋白中碱性轻链的交换,似乎与其与重链相互作用的较高温度稳定性有关。

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