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利用基于裂解物的筛选测定法鉴定活化蛋白 C 的特异性丝氨酸蛋白酶抑制剂。

Identification of serpins specific for activated protein C using a lysate-based screening assay.

机构信息

University of Cambridge, Department of Haematology, Cambridge Institute for Medical Research, Wellcome Trust/MRC Building, Hills Road, Cambridge, CB2 0XY, United Kingdom.

出版信息

Sci Rep. 2018 Jun 8;8(1):8793. doi: 10.1038/s41598-018-27067-z.

Abstract

Activated protein C (APC) is a powerful anticoagulant enzyme that proteolytically inactivates the cofactors of the Xase and prothrombinase complexes, factors VIIIa and Va. A common mutation in factor V, fV, confers resistance to APC leading to an increased risk of thrombosis in the normal population. However, when coinherited with haemophilia, fV reduces bleeding severity, suggesting that inhibition of APC may be a useful strategy for treatment of haemophilia. We previously reported on serpins that were rationally designed for improved specificity for APC over other coagulation serine proteases. Based on structural differences in the substrate binding pockets to either side of the P1 Arg, we mutated the P2 and P1' residues to Lys. Although this approach achieved APC specificity, it resulted in a reduction in the rate of APC inhibition relative to the parent containing only the P1 Arg. Here we conduct site-specific random mutagenesis at the P2 and P1' positions to determine if improvements could be made in the rate of APC inhibition. In addition to our original Lys mutations, we found that Arg and Gln also confer specificity for APC. However, in all cases specificity for APC resulted in a reduction in inhibition rate.

摘要

活化蛋白 C(APC)是一种强大的抗凝酶,可蛋白水解失活 Xase 和凝血酶原酶复合物的辅因子 VIIIa 和 Va。因子 V(fV)中的常见突变赋予 APC 抗性,导致正常人群中血栓形成的风险增加。然而,当与血友病共同遗传时,fV 会降低出血严重程度,这表明 APC 的抑制可能是治疗血友病的一种有用策略。我们之前报道了经过合理设计的丝氨酸蛋白酶抑制剂,以提高对 APC 相对于其他凝血丝氨酸蛋白酶的特异性。基于 P1 Arg 两侧底物结合口袋的结构差异,我们将 P2 和 P1'残基突变为 Lys。尽管这种方法实现了 APC 的特异性,但与仅包含 P1 Arg 的母体相比,APC 抑制的速率降低。在这里,我们在 P2 和 P1'位置进行定点随机诱变,以确定是否可以提高 APC 抑制的速率。除了我们最初的 Lys 突变外,我们还发现 Arg 和 Gln 也赋予 APC 特异性。然而,在所有情况下,APC 的特异性都会导致抑制速率降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d372/5993791/18bae3f0e7f9/41598_2018_27067_Fig1_HTML.jpg

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