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天然细肌丝以及肌动蛋白/原肌球蛋白对平滑肌肌球蛋白Mg2 + -ATP酶的激活作用。

Activation of smooth muscle myosin Mg2+-ATPase by native thin filaments and actin/tropomyosin.

作者信息

Ngai P K, Scott-Woo G C, Lim M S, Sutherland C, Walsh M P

出版信息

J Biol Chem. 1987 Apr 15;262(11):5352-9.

PMID:2951379
Abstract

Application of the myosin competition test (Lehman, W., and Szent-Györgyi, A. G. (1975) J. Gen. Physiol. 66, 1-30) to chicken gizzard actomyosin indicated that this smooth muscle contains a thin filament-linked regulatory mechanism. Chicken gizzard thin filaments, isolated as described previously (Marston, S. B., and Lehman, W. (1985) Biochem. J. 231, 517-522), consisted almost exclusively of actin, tropomyosin, caldesmon, and an unidentified 32-kilodalton polypeptide in molar ratios of 1:1/6:1/26:1/17, respectively. When reconstituted with phosphorylated gizzard myosin, these thin filaments conferred Ca2+ sensitivity (67.8 +/- 2.1%; n = 5) on the myosin Mg2+-ATPase. On the other hand, no Ca2+ sensitivity of the myosin Mg2+-ATPase was observed when purified gizzard actin or actin plus tropomyosin was reconstituted with phosphorylated gizzard myosin. Native thin filaments were rendered essentially free of caldesmon and the 32-kilodalton polypeptide by extraction with 25 mM MgCl2. When reconstituted with phosphorylated gizzard myosin, caldesmon-free thin filaments and native thin filaments exhibited approximately the same Ca2+ sensitivity (45.1 and 42.7%, respectively). The observed Ca2+ sensitivity appears, therefore, not to be due to caldesmon. Only trace amounts of two Ca2+-binding proteins could be detected in native thin filaments. These were identified as calmodulin (present at a molar ratio to actin of 1:733) and the 20-kilodalton light chain of myosin (present at a molar ratio to actin of 1:270). The Ca2+ sensitivity observed in an in vitro system reconstituted from gizzard thin filaments and either skeletal myosin or phosphorylated gizzard myosin is due, therefore, to calmodulin and/or an unidentified minor protein component of the thin filaments which may be an actin-binding protein involved in regulating actin filament structure in a Ca2+-dependent manner.

摘要

将肌球蛋白竞争试验(Lehman, W., and Szent-Györgyi, A. G. (1975) J. Gen. Physiol. 66, 1 - 30)应用于鸡砂囊肌动球蛋白表明,这种平滑肌含有一种与细肌丝相连的调节机制。如前所述(Marston, S. B., and Lehman, W. (1985) Biochem. J. 231, 517 - 522)分离得到的鸡砂囊细肌丝几乎完全由肌动蛋白、原肌球蛋白、钙调蛋白和一种未鉴定的32千道尔顿多肽组成,其摩尔比分别为1:1/6:1/26:1/17。当与磷酸化的砂囊肌球蛋白重构时,这些细肌丝赋予肌球蛋白Mg²⁺ - ATP酶Ca²⁺敏感性(67.8 +/- 2.1%;n = 5)。另一方面,当用磷酸化的砂囊肌球蛋白重构纯化的砂囊肌动蛋白或肌动蛋白加原肌球蛋白时,未观察到肌球蛋白Mg²⁺ - ATP酶的Ca²⁺敏感性。通过用25 mM MgCl₂提取,天然细肌丝基本不含钙调蛋白和32千道尔顿多肽。当与磷酸化的砂囊肌球蛋白重构时,不含钙调蛋白的细肌丝和天然细肌丝表现出大致相同的Ca²⁺敏感性(分别为45.1%和42.7%)。因此,观察到的Ca²⁺敏感性似乎不是由钙调蛋白引起的。在天然细肌丝中仅能检测到痕量的两种Ca²⁺结合蛋白。这些被鉴定为钙调素(与肌动蛋白的摩尔比为1:733)和肌球蛋白的20千道尔顿轻链(与肌动蛋白的摩尔比为1:270)。因此,在由砂囊细肌丝与骨骼肌肌球蛋白或磷酸化的砂囊肌球蛋白重构的体外系统中观察到的Ca²⁺敏感性是由于钙调素和/或细肌丝中一种未鉴定的次要蛋白质成分,该成分可能是一种以Ca²⁺依赖方式参与调节肌动蛋白丝结构的肌动蛋白结合蛋白。

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