Ruf W
Department of Immunology, Scripps Research Institute, La Jolla, California 92037.
Biochemistry. 1994 Sep 27;33(38):11631-6. doi: 10.1021/bi00204a026.
The serine protease factor VIIa (VIIa) in complex with tissue factor is responsible for initiating proteolytic events in the coagulation pathways. Efficient proteolysis by the extrinsic activation complex appears to depend on structural determinants in the cofactor as well as the light and heavy chain domains of VIIa. This study characterizes the functional defect resulting from alanine replacement for R290 in the VIIa protease domain. VIIa R290-->A bound both full-length and soluble tissue factor with affinities indistinguishable from wild-type VIIa, consistent with overall unaltered folding of the mutant protein. The catalytic function of VIIa R290-->A was further demonstrated to be unperturbed when analyzed with three different peptidyl p-nitroanilide substrates, indicating that the function of the catalytic triad is not affected by the mutation. However, proteolytic activation of factor X was diminished due to a 4-5-fold decreased kcat in the presence and a > 10-fold decreased rate in the absence of a negatively charged phospholipid surface. The functional defect resulting from the R290-->A replacement was observed in the presence and absence of cofactor. Within the structural framework of serine protease domains, R290 is predicted to be localized in a surface-exposed loop suggested to contribute to substrate selectivity in other serine proteases, consistent with the proposed functional role of R290 in the proteolytic activation of the natural substrate factor X.
与组织因子形成复合物的丝氨酸蛋白酶因子VIIa(VIIa)负责启动凝血途径中的蛋白水解事件。外源性激活复合物的有效蛋白水解似乎取决于辅因子以及VIIa的轻链和重链结构域中的结构决定因素。本研究描述了VIIa蛋白酶结构域中丙氨酸取代R290所导致的功能缺陷。VIIa R290→A与全长和可溶性组织因子结合的亲和力与野生型VIIa无法区分,这与突变蛋白的整体折叠未改变一致。当用三种不同的肽基对硝基苯胺底物进行分析时,VIIa R290→A的催化功能进一步被证明未受干扰,表明催化三联体的功能不受该突变影响。然而,由于在存在带负电荷的磷脂表面时kcat降低了4 - 5倍,在不存在该表面时速率降低了10倍以上,因子X的蛋白水解激活作用减弱。在存在和不存在辅因子的情况下均观察到了R290→A取代导致的功能缺陷。在丝氨酸蛋白酶结构域的结构框架内,R290预计位于一个表面暴露的环中,该环被认为有助于其他丝氨酸蛋白酶的底物选择性,这与R290在天然底物因子X的蛋白水解激活中的拟议功能作用一致。