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鉴定组织因子上与因子X的第一个表皮生长因子样结构域相互作用的一个碱性区域。

Identification of a basic region on tissue factor that interacts with the first epidermal growth factor-like domain of factor X.

作者信息

Manithody Chandrashekhara, Yang Likui, Rezaie Alireza R

机构信息

Edward A. Doisy Department of Biochemistry and Molecular Biology, St. Louis University School of Medicine, St. Louis, Missouri 63104, USA.

出版信息

Biochemistry. 2007 Mar 20;46(11):3193-9. doi: 10.1021/bi6025193. Epub 2007 Feb 27.

Abstract

Tissue factor (TF) facilitates the recognition and rapid activation of factor X (fX) by factor VIIa (fVIIa) in the extrinsic Xase pathway. TF makes extensive interactions with both light and heavy chains of fVIIa; however, with the exception of a basic recognition site for the Gla domain of fX, no other interactive site on TF for the substrate has been identified. Structural and modeling data have predicted that a basic region of TF comprised of residues Asn-199, Arg-200, and Lys-201 is located at a proper height on the membrane surface to interact with either the C-terminus of the Gla domain or the EGF-1 domain of fX. To investigate this possibility, we prepared the Ala substitution mutants of these residues and evaluated their ability to function as cofactors for fVIIa in the activation of wild-type fX and its two mutants which lack either the Gla domain (GD-fX) or both the Gla and EGF-1 domains (E2-fX). All three TF mutants exhibited normal cofactor activity in the amidolytic activity assays, but the cofactor activity of Arg-200 and Lys-201 mutants in fVIIa activation of both fX and GD-fX, but not E2-fX, was impaired approximately 3-fold. Further kinetic analysis revealed that kcat values with both TF mutants are impaired with no change in Km. These results suggest that both Arg-200 and Lys-201 of TF interact with EGF-1 of fX to facilitate the optimal docking of the substrate into the catalytic groove of the protease in the activation complex.

摘要

组织因子(TF)在外源性X酶途径中促进因子VIIa(fVIIa)对因子X(fX)的识别和快速激活。TF与fVIIa的轻链和重链都有广泛的相互作用;然而,除了fX的Gla结构域的一个碱性识别位点外,尚未在TF上鉴定出其他与底物相互作用的位点。结构和建模数据预测,由Asn-199、Arg-200和Lys-201残基组成的TF碱性区域位于膜表面的适当高度,可与fX的Gla结构域的C末端或EGF-1结构域相互作用。为了研究这种可能性,我们制备了这些残基的丙氨酸替代突变体,并评估了它们在激活野生型fX及其两个突变体(分别缺失Gla结构域(GD-fX)或同时缺失Gla和EGF-1结构域(E2-fX))时作为fVIIa辅因子的功能。所有三个TF突变体在酰胺水解活性测定中均表现出正常的辅因子活性,但Arg-200和Lys-201突变体在fVIIa激活fX和GD-fX(而非E2-fX)时的辅因子活性受损约3倍。进一步的动力学分析表明,两个TF突变体的kcat值均受损,而Km无变化。这些结果表明,TF的Arg-200和Lys-201均与fX的EGF-1相互作用,以促进底物在激活复合物中最佳地对接至蛋白酶的催化凹槽。

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