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组织因子突变对大分子底物激活精细特异性的影响。

Influence of mutations in tissue factor on the fine specificity of macromolecular substrate activation.

作者信息

Dittmar S, Ruf W, Edgington T S

机构信息

Department of Immunology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Biochem J. 1997 Feb 1;321 ( Pt 3)(Pt 3):787-93. doi: 10.1042/bj3210787.

Abstract

The C-terminal fibronectin-type-III-like module of the tissue factor (TF) extracellular domain plays a requisite role in the activation of macromolecular substrates by factor VIIa (VIIa) in complex with TF. Unlike the mutations Lys165-->Ala, Lys166-->Ala in TF, which prevent efficient proteolysis of factor X, we found that the coagulant defect of a site-specific Trp158-->Arg, Ser160-->Gly replacement mutant of TF is largely attributable to the inability of TF to efficiently support the activation of the bound zymogen VII to the active protease VIIa. Binding studies demonstrated comparable affinity of binding of VIIa or VII by wild-type TF and TF(R158G160). In comparison with wild-type TF, the catalytic efficiency of factor X activation was reduced 56-fold with TF(A165A166) as the cofactor, but only 3.5-fold with TF(R165G160). The activation of VII bound to TF by factor Xa or VIIa was reduced 2-fold in the presence of TF(R158G160) and 7-8-fold with TF(A165A166). This suggests that the molecular recognition of VII in complex with TF by the enzymes TF-VIIa and factor Xa are similar. Generation of factor IXa by TF(R158G160)-VIIa was unaltered, but reduced 2-fold with TF(A165A166). In addition, the mutations affected the cleavage of the two scissile bonds of factor IX differently, providing further support for the idea that the cofactor, TF, influences the fine specificity of activation of macromolecular substrates by the TF-VIIa complex.

摘要

组织因子(TF)细胞外结构域的C末端纤连蛋白III型样模块在与TF形成复合物的因子VIIa(VIIa)激活大分子底物的过程中发挥着必不可少的作用。与TF中阻止因子X有效蛋白水解的Lys165→Ala、Lys166→Ala突变不同,我们发现TF的位点特异性Trp158→Arg、Ser160→Gly替代突变体的凝血缺陷很大程度上归因于TF无法有效地将结合的酶原VII激活为活性蛋白酶VIIa。结合研究表明,野生型TF和TF(R158G160)对VIIa或VII的结合亲和力相当。与野生型TF相比,以TF(A165A166)作为辅因子时,因子X激活的催化效率降低了56倍,但以TF(R165G160)作为辅因子时仅降低了3.5倍。在存在TF(R158G160)的情况下,因子Xa或VIIa对结合在TF上的VII的激活降低了2倍,而在TF(A165A166)存在的情况下降低了7 - 8倍。这表明TF - VIIa酶和因子Xa对与TF形成复合物的VII的分子识别是相似的。TF(R158G160)- VIIa对因子IXa的生成没有改变,但在TF(A165A166)存在时降低了2倍。此外,这些突变对因子IX的两个可裂解键的切割影响不同,这进一步支持了辅因子TF影响TF - VIIa复合物对大分子底物激活的精细特异性这一观点。

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