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TIMP-3对ADAM抑制作用的结构决定因素:TACE-N-TIMP-3复合物的晶体结构

Structural determinants of the ADAM inhibition by TIMP-3: crystal structure of the TACE-N-TIMP-3 complex.

作者信息

Wisniewska Magdalena, Goettig Peter, Maskos Klaus, Belouski Edward, Winters Dwight, Hecht Randy, Black Roy, Bode Wolfram

机构信息

Max-Planck-Institut für Biochemie, Proteinase Research Group, Am Klopferspitz 18, D-82152 Martinsried, Germany.

出版信息

J Mol Biol. 2008 Sep 19;381(5):1307-19. doi: 10.1016/j.jmb.2008.06.088. Epub 2008 Jul 7.

Abstract

TIMP-3 (tissue inhibitor of metalloproteinases 3) is unique among the TIMP inhibitors, in that it effectively inhibits the TNF-alpha converting enzyme (TACE). In order to understand this selective capability of inhibition, we crystallized the complex formed by the catalytic domain of recombinant human TACE and the N-terminal domain of TIMP-3 (N-TIMP-3), and determined its molecular structure with X-ray data to 2.3 A resolution. The structure reveals that TIMP-3 exhibits a fold similar to those of TIMP-1 and TIMP-2, and interacts through its functional binding edge, which consists of the N-terminal segment and other loops, with the active-site cleft of TACE in a manner similar to that of matrix metalloproteinases (MMPs). Therefore, the mechanism of TIMP-3 binding toward TACE is not fundamentally different from that previously elucidated for the MMPs. The Phe34 phenyl side chain situated at the tip of the relatively short sA-sB loop of TIMP-3 extends into a unique hydrophobic groove of the TACE surface, and two Leu residues in the adjacent sC-connector and sE-sF loops are tightly packed in the interface allowing favourable interactions, in agreement with predictions obtained by systematic mutations by Gillian Murphy's group. The combination of favourable functional epitopes together with a considerable flexibility renders TIMP-3 an efficient TACE inhibitor. This structure might provide means to design more efficient TIMP inhibitors of TACE.

摘要

基质金属蛋白酶组织抑制剂3(TIMP-3)在TIMP抑制剂中独具特色,因为它能有效抑制肿瘤坏死因子-α转化酶(TACE)。为了解这种选择性抑制能力,我们使重组人TACE的催化结构域与TIMP-3的N端结构域(N-TIMP-3)形成的复合物结晶,并利用X射线数据确定其分子结构,分辨率达2.3埃。该结构表明,TIMP-3呈现出与TIMP-1和TIMP-2相似的折叠方式,并通过其由N端片段和其他环组成的功能性结合边缘,以类似于基质金属蛋白酶(MMP)的方式与TACE的活性位点裂隙相互作用。因此,TIMP-3与TACE结合的机制与先前阐明的MMP的机制并无根本差异。位于TIMP-3相对较短的sA-sB环末端的苯丙氨酸34的苯侧链延伸至TACE表面一个独特的疏水凹槽中,相邻的sC-连接环和sE-sF环中的两个亮氨酸残基紧密堆积在界面处,形成有利的相互作用,这与吉利安·墨菲团队通过系统突变获得的预测结果一致。有利的功能表位与相当大的灵活性相结合,使TIMP-3成为一种高效的TACE抑制剂。该结构可能为设计更有效的TACE的TIMP抑制剂提供方法。

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