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原肌球蛋白周期性重复序列的功能。

Functions of tropomyosin's periodic repeats.

作者信息

Hitchcock-DeGregori Sarah E, Song Yuhua, Greenfield Norma J

机构信息

Department of Neuroscience and Cell Biology, UMDNJ-Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.

出版信息

Biochemistry. 2002 Dec 17;41(50):15036-44. doi: 10.1021/bi026519k.

Abstract

Tropomyosin binds along actin filaments and regulates actin-myosin interaction in muscle and nonmuscle cells. Seven periodic amino acid repeats are proposed to correspond to actin binding sites, and the middle periods are important for cooperative activation of actin by myosin. The functional contributions of individual periods were studied in mutants in which periods 2-6 were individually deleted from rat striated muscle alphaalpha-tropomyosin or replaced with a leucine zipper sequence. Unacetylated recombinant tropomyosins were assayed for actin binding, regulation of the actomyosin ATPase with troponin, cooperative myosin S1-induced binding to actin, and thermal stability. Tropomyosin function is relatively insensitive to deletion of period 2, but loss increases as the deletion is shifted toward the C-terminus. Retention of function upon deletion of the periodic repeats is in the order of 2 > 3 approximately 4 approximately 6 >> 5. Internal periods are important for specific functions and are not quasiequivalent. Deletion of period 5 (residues 166-207), and especially deletion or replacement of residues 166-188, a constitutively expressed region encoded by exon 5, had severe consequences on actin affinity and cooperative myosin S1-induced binding to actin. Period 6, residues 208-242, part of the troponin binding site, is required for full inhibition of the actomyosin ATPase in the absence of calcium. The effect of the deletion can depend on its context, suggesting that sequence alone is not the only factor important for function. We propose that the local structure and stability, and consequent flexibility, of the coiled coil are major determinants of actin affinity.

摘要

原肌球蛋白沿肌动蛋白丝结合,并调节肌肉和非肌肉细胞中的肌动蛋白-肌球蛋白相互作用。七个周期性氨基酸重复序列被认为对应于肌动蛋白结合位点,中间周期对于肌球蛋白对肌动蛋白的协同激活很重要。在大鼠横纹肌αα-原肌球蛋白中分别缺失第2-6周期或用亮氨酸拉链序列替换的突变体中研究了各个周期的功能贡献。对未乙酰化的重组原肌球蛋白进行了肌动蛋白结合、肌钙蛋白对肌动球蛋白ATP酶的调节、肌球蛋白S1诱导的与肌动蛋白的协同结合以及热稳定性的测定。原肌球蛋白功能对第2周期的缺失相对不敏感,但随着缺失向C端转移,功能丧失增加。周期性重复序列缺失后的功能保留顺序为2>3≈4≈6>>5。内部周期对特定功能很重要,并非准等效。第5周期(残基166-207)的缺失,尤其是外显子5编码的组成性表达区域残基166-188的缺失或替换,对肌动蛋白亲和力和肌球蛋白S1诱导的与肌动蛋白的协同结合有严重影响。第6周期,残基208-242,是肌钙蛋白结合位点的一部分,在没有钙的情况下,对于完全抑制肌动球蛋白ATP酶是必需的。缺失的影响可能取决于其背景,这表明仅序列不是功能的唯一重要因素。我们提出,卷曲螺旋的局部结构和稳定性以及随之而来的柔韧性是肌动蛋白亲和力的主要决定因素。

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