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鸟氨酸毒素-凝血酶晶体结构,解开TAP之谜的关键?

The ornithodorin-thrombin crystal structure, a key to the TAP enigma?

作者信息

van de Locht A, Stubbs M T, Bode W, Friedrich T, Bollschweiler C, Höffken W, Huber R

机构信息

Max-Planck-Institut für Biochemie, Abteilung Strukturforschung, Martinsreid, Germany.

出版信息

EMBO J. 1996 Nov 15;15(22):6011-7.

Abstract

Ornithodorin, isolated from the blood sucking soft tick Ornithodoros moubata, is a potent (Ki = 10(-12) M) and highly selective thrombin inhibitor. Internal sequence homology indicates a two domain protein. Each domain resembles the Kunitz inhibitor basic pancreatic trypsin inhibitor (BPTI) and also the tick anticoagulant peptide (TAP) isolated from the same organism. The 3.1 A crystal structure of the ornithodorin-thrombin complex confirms that both domains of ornithodorin exhibit a distorted BPTI-like fold. The N-terminal portion and the C-terminal helix of each domain are structurally very similar to BPTI, whereas the regions corresponding to the binding loop of BPTI adopt different conformations. Neither of the two 'reactive site loops' of ornithodorin contacts the protease in the ornithodorin-thrombin complex. Instead, the N-terminal residues of ornithodorin bind to the active site of thrombin, reminiscent of the thrombin-hirudin interaction. The C-terminal domain binds at the fibrinogen recognition exosite. Molecular recognition of its target protease by this double-headed Kunitz-type inhibitor diverges considerably from other members of this intensely studied superfamily. The complex structure provides a model to explain the perplexing results of mutagenesis studies on the TAP-factor Xa interaction.

摘要

从吸血软蜱莫氏钝缘蜱(Ornithodoros moubata)中分离出的奥尼托丁(ornithodorin)是一种强效(Ki = 10⁻¹² M)且高度选择性的凝血酶抑制剂。内部序列同源性表明它是一种双结构域蛋白。每个结构域类似于库尼茨抑制剂碱性胰蛋白酶抑制剂(BPTI),也类似于从同一生物体中分离出的蜱抗凝肽(TAP)。奥尼托丁 - 凝血酶复合物的3.1埃晶体结构证实,奥尼托丁的两个结构域均呈现出扭曲的类似BPTI的折叠结构。每个结构域的N端部分和C端螺旋在结构上与BPTI非常相似,而与BPTI结合环相对应的区域则采用不同的构象。在奥尼托丁 - 凝血酶复合物中,奥尼托丁的两个“活性位点环”均未与蛋白酶接触。相反,奥尼托丁的N端残基与凝血酶的活性位点结合,这让人联想到凝血酶 - 水蛭素的相互作用。C端结构域在纤维蛋白原识别外位点结合。这种双头库尼茨型抑制剂对其靶蛋白酶的分子识别与这个经过深入研究的超家族的其他成员有很大不同。该复合物结构为解释关于TAP - 因子Xa相互作用的诱变研究中令人困惑的结果提供了一个模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e160/452422/5bf0d2357de7/emboj00022-0008-a.jpg

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