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参与因子X激活的因子VII上的特定分子相互作用位点。

Specific molecular interaction sites on factor VII involved in factor X activation.

作者信息

Kumar A, Fair D S

机构信息

Department of Biochemistry, University of Texas Health Center, Tyler 75710.

出版信息

Eur J Biochem. 1993 Oct 15;217(2):509-18. doi: 10.1111/j.1432-1033.1993.tb18271.x.

Abstract

Factor VII, a serine-protease zymogen, and tissue factor, the cellular receptor/coenzyme, are the protein components of the macromolecular complex which initiates the extrinsic pathway of the coagulation cascade. Previous studies were directed to the identification of functional sites on factor VII which mediate factor X activation, employing a series of potentially inhibitory synthetic peptides representing the primary structure of factor VII and antibodies to selected peptides. The involvement of at least four high-affinity interactive regions [factor VII (44-50), (196-229), (285-305) and (376-396) peptides] on the surface of factor VII was clearly demonstrated. The minimal sequences for the expression of inhibitory activity of these four molecular recognition domains on factor VII were identified using short and overlapping peptides. The short factor VII-(206-218)-peptide (most inhibitory peptide in the sequence 196-229 on factor VII) inhibited the binding of factor VII to the tissue-factor-expressing J82 cell line. Furthermore, radiolabeled [Tyr201] factor VII-(199-221)-peptide, with a tyrosine substituted for the normal tryptophan residue, was specifically bound to J82 cells, and also the binding of the radiolabeled peptide to this cell line was specifically inhibited by a monoclonal antibody to tissue factor, confirming that the interaction site for tissue factor on factor VII is present within the peptide sequence 196-229. Kinetic analyses suggested that the regions represented by factor VII-(285-305)- and factor VII-(376-396)-peptides are involved in factor X recognition and the chemical cross-linking of the radiolabeled peptides resulted in specific binding to factor X, confirming that these two regions on factor VII represent the substrate-recognition site. Furthermore, these radiolabeled peptides specifically interact with the heavy chain of factor X, suggesting that the complementary binding region for the substrate-recognition site on factor VII are present on the heavy chain of factor X.

摘要

凝血因子VII是一种丝氨酸蛋白酶原,组织因子是细胞受体/辅酶,它们是启动凝血级联反应外源性途径的大分子复合物的蛋白质成分。以往的研究旨在通过一系列代表凝血因子VII一级结构的潜在抑制性合成肽和针对选定肽的抗体,鉴定凝血因子VII上介导因子X激活的功能位点。凝血因子VII表面至少四个高亲和力相互作用区域[凝血因子VII(44 - 50)、(196 - 229)、(285 - 305)和(376 - 396)肽段]的参与得到了明确证实。使用短的重叠肽段确定了这四个分子识别结构域在凝血因子VII上表达抑制活性的最小序列。短的凝血因子VII-(206 - 218)肽段(凝血因子VII序列196 - 229中最具抑制性的肽段)抑制了凝血因子VII与表达组织因子的J82细胞系的结合。此外,用酪氨酸取代正常色氨酸残基的放射性标记的[Tyr201]凝血因子VII-(199 - 221)肽段特异性结合到J82细胞上,并且该放射性标记肽段与该细胞系的结合也被抗组织因子单克隆抗体特异性抑制,证实凝血因子VII上组织因子的相互作用位点存在于肽段序列196 - 229内。动力学分析表明,凝血因子VII-(285 - 305)肽段和凝血因子VII-(376 - 396)肽段所代表的区域参与因子X的识别,放射性标记肽段的化学交联导致其与因子X特异性结合,证实凝血因子VII上的这两个区域代表底物识别位点。此外,这些放射性标记肽段与因子X的重链特异性相互作用,表明凝血因子VII上底物识别位点的互补结合区域存在于因子X的重链上。

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