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以其人之道还治其人之身:可溶性非组织因子依赖的凝血因子VIIa的设计与特性

Beating tissue factor at its own game: Design and properties of a soluble tissue factor-independent coagulation factor VIIa.

作者信息

Sorensen Anders B, Tuneew Inga, Svensson L Anders, Persson Egon, Østergaard Henrik, Overgaard Michael Toft, Olsen Ole H, Gandhi Prafull S

机构信息

Global Research, Novo Nordisk A/S, DK-2760 Måløv, Denmark; Department of Chemistry and Bioscience, Aalborg University, DK-9220 Aalborg, Denmark.

Global Research, Novo Nordisk A/S, DK-2760 Måløv, Denmark.

出版信息

J Biol Chem. 2020 Jan 10;295(2):517-528. doi: 10.1074/jbc.RA119.009183. Epub 2019 Dec 4.

Abstract

Two decades of research have uncovered the mechanism by which the complex of tissue factor (TF) and the plasma serine protease factor VIIa (FVIIa) mediates the initiation of blood coagulation. Membrane-anchored TF directly interacts with substrates and induces allosteric effects in the protease domain of FVIIa. These properties are also recapitulated by the soluble ectodomain of TF (sTF). At least two interdependent allosteric activation pathways originate at the FVIIa:sTF interface are proposed to enhance FVIIa activity upon sTF binding. Here, we sought to engineer an sTF-independent FVIIa variant by stabilizing both proposed pathways, with one pathway terminating at segment 215-217 in the activation domain and the other pathway terminating at the N terminus insertion site. To stabilize segment 215-217, we replaced the flexible 170 loop of FVIIa with the more rigid 170 loop from trypsin and combined it with an L163V substitution (FVIIa-VY). The FVIIa-VYT variant exhibited 60-fold higher amidolytic activity than FVIIa, and displayed similar FX activation and antithrombin inhibition kinetics to the FVIIa.sTF complex. The sTF-independent activity of FVIIa-VY was partly mediated by an increase in the N terminus insertion and, as shown by X-ray crystallography, partly by Tyr-172 inserting into a cavity in the activation domain stabilizing the S1 substrate-binding pocket. The combination with L163V likely drove additional changes in a delicate hydrogen-bonding network that further stabilized S1-S3 sites. In summary, we report the first FVIIa variant that is catalytically independent of sTF and provide evidence supporting the existence of two TF-mediated allosteric activation pathways.

摘要

二十年的研究揭示了组织因子(TF)与血浆丝氨酸蛋白酶因子VIIa(FVIIa)复合物介导血液凝固起始的机制。膜锚定的TF直接与底物相互作用,并在FVIIa的蛋白酶结构域中诱导变构效应。TF的可溶性胞外域(sTF)也具有这些特性。有人提出,至少有两条相互依赖的变构激活途径起源于FVIIa:sTF界面,以增强sTF结合后FVIIa的活性。在这里,我们试图通过稳定两条提出的途径来设计一种不依赖sTF的FVIIa变体,其中一条途径在激活域的215-217片段终止,另一条途径在N端插入位点终止。为了稳定215-217片段,我们用胰蛋白酶中更刚性的170环取代了FVIIa的柔性170环,并将其与L163V取代(FVIIa-VY)相结合。FVIIa-VYT变体的酰胺水解活性比FVIIa高60倍,并且在FX激活和抗凝血酶抑制动力学方面与FVIIa.sTF复合物相似。FVIIa-VY不依赖sTF的活性部分是由N端插入的增加介导的,并且如X射线晶体学所示,部分是由Tyr-172插入激活域中的一个腔中,稳定了S1底物结合口袋。与L163V的组合可能推动了精细氢键网络中的额外变化,进一步稳定了S1-S3位点。总之,我们报道了第一个催化上不依赖sTF的FVIIa变体,并提供了支持两条TF介导的变构激活途径存在的证据。

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