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钙调蛋白-W-7复合物的溶液结构:分子识别多样性的基础

Solution structure of calmodulin-W-7 complex: the basis of diversity in molecular recognition.

作者信息

Osawa M, Swindells M B, Tanikawa J, Tanaka T, Mase T, Furuya T, Ikura M

机构信息

Molecular Chemistry Research Chemistry Laboratories, Yamanouchi Pharmaceutical Co., Tsukuba, Japan.

出版信息

J Mol Biol. 1998 Feb 13;276(1):165-76. doi: 10.1006/jmbi.1997.1524.

Abstract

The solution structure of calcium-bound calmodulin (CaM) complexed with an antagonist, N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7), has been determined by multidimensional NMR spectroscopy. The structure consists of one molecule of W-7 binding to each of the two domains of CaM. In each domain, the W-7 chloronaphthalene ring interacts with four methionine methyl groups and other aliphatic or aromatic side-chains in a deep hydrophobic pocket, the site responsible for CaM binding to CaM-dependent enzymes such as myosin light chain kinases (MLCKs) and CaM kinase II. This competitive binding at the same site between W-7 and CaM-dependent enzymes suggests the mechanism by which W-7 inhibits CaM to activate the enzymes. The orientation of the W-7 naphthalene ring in the N-terminal pocket is rotated approximately 40 degrees with respect to that in the C-terminal pocket. The W-7 ring orientation differs significantly from the Trp800 indole ring of smooth muscle MLCK bound to the C-terminal pocket and the phenothiazine ring of trifluoperazine bound to the N or C-terminal pocket. These comparative structural analyses demonstrate that the two hydrophobic pockets of CaM can accommodate a variety of bulky aromatic rings, which provides a plausible structural basis for the diversity in CaM-mediated molecular recognition.

摘要

已通过多维核磁共振光谱法确定了与拮抗剂N-(6-氨基己基)-5-氯-1-萘磺酰胺(W-7)复合的钙结合钙调蛋白(CaM)的溶液结构。该结构由一个W-7分子与CaM的两个结构域中的每一个结合组成。在每个结构域中,W-7氯萘环与一个深疏水口袋中的四个甲硫氨酸甲基以及其他脂肪族或芳香族侧链相互作用,该口袋是负责CaM与诸如肌球蛋白轻链激酶(MLCKs)和CaM激酶II等CaM依赖性酶结合的位点。W-7与CaM依赖性酶在同一位点的这种竞争性结合表明了W-7抑制CaM激活这些酶的机制。W-7萘环在N端口袋中的取向相对于C端口袋中的取向旋转了约40度。W-7环的取向与结合到C端口袋的平滑肌MLCK的Trp800吲哚环以及结合到N端或C端口袋的三氟拉嗪的吩噻嗪环有显著差异。这些比较结构分析表明,CaM的两个疏水口袋可以容纳各种庞大的芳香环,这为CaM介导的分子识别多样性提供了合理的结构基础。

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