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凝血酶激活的纤溶抑制物前肽结构域的柔韧性使其能够与蛋白质底物进行有效结合。

Flexibility of the thrombin-activatable fibrinolysis inhibitor pro-domain enables productive binding of protein substrates.

机构信息

Center for Insoluble Protein Structure (inSPIN), Department of Molecular Biology, Science Park, Aarhus University, Gustav Wieds Vej 10C, DK-8000 Aarhus C, Denmark.

出版信息

J Biol Chem. 2010 Dec 3;285(49):38243-50. doi: 10.1074/jbc.M110.150342. Epub 2010 Sep 29.

Abstract

We have previously reported that thrombin-activatable fibrinolysis inhibitor (TAFI) exhibits intrinsic proteolytic activity toward large peptides. The structural basis for this observation was clarified by the crystal structures of human and bovine TAFI. These structures evinced a significant rotation of the pro-domain away from the catalytic moiety when compared with other pro-carboxypeptidases, thus enabling access of large peptide substrates to the active site cleft. Here, we further investigated the flexible nature of the pro-domain and demonstrated that TAFI forms productive complexes with protein carboxypeptidase inhibitors from potato, leech, and tick (PCI, LCI, and TCI, respectively). We determined the crystal structure of the bovine TAFI-TCI complex, revealing that the pro-domain was completely displaced from the position observed in the TAFI structure. It protruded into the bulk solvent and was disordered, whereas TCI occupied the position previously held by the pro-domain. The authentic nature of the presently studied TAFI-inhibitor complexes was supported by the trimming of the C-terminal residues from the three inhibitors upon complex formation. This finding suggests that the inhibitors interact with the active site of TAFI in a substrate-like manner. Taken together, these data show for the first time that TAFI is able to form a bona fide complex with protein carboxypeptidase inhibitors. This underlines the unusually flexible nature of the pro-domain and implies a possible mechanism for regulation of TAFI intrinsic proteolytic activity in vivo.

摘要

我们之前曾报道过凝血酶激活的纤溶抑制物(TAFI)对大肽具有内在的蛋白水解活性。通过人源和牛源 TAFI 的晶体结构,阐明了这一观察结果的结构基础。与其他原羧肽酶相比,这些结构显示出前结构域相对于催化结构域的显著旋转,从而使大肽底物能够进入活性位点裂缝。在这里,我们进一步研究了前结构域的柔性,并证明 TAFI 与来自土豆、水蛭和蜱的蛋白羧肽酶抑制剂(分别为 PCI、LCI 和 TCI)形成有活性的复合物。我们测定了牛源 TAFI-TCI 复合物的晶体结构,揭示了前结构域完全从 TAFI 结构中观察到的位置位移。它突出到主体溶剂中并呈现无序状态,而 TCI 占据了前结构域的位置。通过三种抑制剂在复合物形成时从 C 末端残基的修剪,支持了目前研究的 TAFI-抑制剂复合物的真实性。这一发现表明,抑制剂以类似于底物的方式与 TAFI 的活性位点相互作用。总之,这些数据首次表明 TAFI 能够与蛋白羧肽酶抑制剂形成真正的复合物。这强调了前结构域异常灵活的性质,并暗示了体内 TAFI 内在蛋白水解活性调节的可能机制。

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MEROPS: the peptidase database.MEROPs:肽酶数据库。
Nucleic Acids Res. 2010 Jan;38(Database issue):D227-33. doi: 10.1093/nar/gkp971. Epub 2009 Nov 5.
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Structure and mechanism of metallocarboxypeptidases.金属羧肽酶的结构与作用机制。
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