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组织因子途径抑制物的凝血因子Xa裂解与抗凝活性丧失相关。

Factor Xa cleavage of tissue factor pathway inhibitor is associated with loss of anticoagulant activity.

作者信息

Salemink I, Franssen J, Willems G M, Hemker H C, Li A, Wun T C, Lindhout T

机构信息

Department of Biochemistry, Maastricht University, The Netherlands.

出版信息

Thromb Haemost. 1998 Aug;80(2):273-80.

PMID:9716152
Abstract

Tissue factor:factor VIIa induced activation of blood coagulation is inhibited by the complex between factor Xa and tissue factor pathway inhibitor (factor Xa:TFPI). We recently reported that phospholipid-bound factor Xa reduces the high binding affinity of factor Xa:TFPI for negatively charged phospholipids by a partial degradation of TFPI (17). The present study was undertaken to elucidate the factor Xa cleavage sites in TFPI and to delineate the consequences of this proteolysis with respect to the inhibitory activity of factor Xa:TFPI. We found that phospholipid-bound factor Xa cleaves in TFPI the peptide bonds between Lys86-Thr87 and Argl99-Ala200. Interestingly, Arg199 is the P1 residue of the third Kunitz-type protease inhibitor domain. The fast cleavage of the Arg199-Ala200 bond results in a 50-70% reduction of the anticoagulant activity of factor Xa:TFPI, as determined with a dilute tissue factor assay, but is not associated with a diminished inhibitory activity of factor Xa:TFPI towards TF:factor VIIa catalyzed activation of factor X. On the other hand, the slower cleavage of the Lys86-Thr87 peptide bond was associated with both a diminished anticoagulant and anti-TF:factor VIIa activity. Dissociation of factor Xa from the cleaved TFPI was not observed. These data provide evidence for a dual role of factor Xa since it is the essential cofactor in the TFPI-controlled regulation of TF-dependent coagulation as well as a catalyst of the inactivation of TFPI.

摘要

组织因子

因子VIIa诱导的血液凝固激活受到因子Xa与组织因子途径抑制剂(因子Xa:TFPI)之间复合物的抑制。我们最近报道,磷脂结合的因子Xa通过部分降解TFPI降低了因子Xa:TFPI对带负电荷磷脂的高结合亲和力(17)。本研究旨在阐明TFPI中因子Xa的切割位点,并描述这种蛋白水解对因子Xa:TFPI抑制活性的影响。我们发现,磷脂结合的因子Xa在TFPI中切割Lys86-Thr87和Arg199-Ala200之间的肽键。有趣的是,Arg199是第三个Kunitz型蛋白酶抑制剂结构域的P1残基。Arg199-Ala200键的快速切割导致因子Xa:TFPI的抗凝活性降低50-70%,这是通过稀释组织因子测定法确定的,但与因子Xa:TFPI对TF:因子VIIa催化的因子X激活的抑制活性降低无关。另一方面,Lys86-Thr87肽键的较慢切割与抗凝活性和抗TF:因子VIIa活性的降低均有关。未观察到因子Xa从切割后的TFPI上解离。这些数据为因子Xa的双重作用提供了证据,因为它是TFPI控制的TF依赖性凝血调节中的必需辅因子,也是TFPI失活的催化剂。

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