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通过氢氘交换质谱法研究激活因子 IX 中的因子 VIII 驱动变化。

Factor VIII-driven changes in activated factor IX explored by hydrogen-deuterium exchange mass spectrometry.

机构信息

Department of Molecular and Cellular Hemostasis, Sanquin Research, Amsterdam, The Netherlands; and.

Department of Biomolecular Mass Spectrometry and Proteomics, and.

出版信息

Blood. 2020 Dec 3;136(23):2703-2714. doi: 10.1182/blood.2020005593.

Abstract

The assembly of the enzyme-activated factor IX (FIXa) with its cofactor, activated factor VIII (FVIIIa) is a crucial event in the coagulation cascade. The absence or dysfunction of either enzyme or cofactor severely compromises hemostasis and causes hemophilia. FIXa is a notoriously inefficient enzyme that needs FVIIIa to drive its hemostatic potential, by a mechanism that has remained largely elusive to date. In this study, we employed hydrogen-deuterium exchange-mass spectrometry (HDX-MS) to investigate how FIXa responds to assembly with FVIIIa in the presence of phospholipids. This revealed a complex pattern of changes that partially overlaps with those changes that occur upon occupation of the substrate-binding site by an active site-directed inhibitor. Among the changes driven by both cofactor and substrate, HDX-MS highlighted several surface loops that have been implicated in allosteric networks in related coagulation enzymes. Inspection of FVIIIa-specific changes indicated that 3 helices are involved in FIXa-FVIIIa assembly. These are part of a basic interface that is also known as exosite II. Mutagenesis of basic residues herein, followed by functional studies, identified this interface as an extended FVIIIa-interactive patch. HDX-MS was also applied to recombinant FIXa variants that are associated with severe hemophilia B. This revealed that single amino acid substitutions can silence the extended network of FVIIIa-driven allosteric changes. We conclude that HDX-MS has the potential to visualize the functional impact of disease-associated mutations on enzyme-cofactor complexes in the hemostatic system.

摘要

酶激活因子 IX(FIXa)与其辅因子,激活因子 VIII(FVIIIa)的组装是凝血级联反应中的一个关键事件。酶或辅因子的缺失或功能障碍都会严重损害止血功能,并导致血友病。FIXa 是一种效率极低的酶,需要 FVIIIa 来发挥其止血潜能,其机制迄今在很大程度上仍难以捉摸。在这项研究中,我们采用氘氢交换质谱(HDX-MS)来研究 FIXa 在磷脂存在的情况下与 FVIIIa 组装时的反应。这揭示了一种复杂的变化模式,部分与占据底物结合位点的活性位点定向抑制剂所发生的变化重叠。在辅因子和底物驱动的变化中,HDX-MS 突出了几个表面环,这些表面环与相关凝血酶中的变构网络有关。对 FVIIIa 特异性变化的检查表明,有 3 个螺旋参与 FIXa-FVIIIa 组装。这些是基本界面的一部分,也称为外显子 II。对该界面中的碱性残基进行突变,然后进行功能研究,确定该界面为扩展的 FVIIIa 相互作用补丁。HDX-MS 还应用于与严重血友病 B 相关的重组 FIXa 变体。这表明,单个氨基酸取代可以使 FVIIIa 驱动的变构变化的扩展网络沉默。我们得出结论,HDX-MS 有可能可视化与疾病相关的突变对止血系统中酶辅因子复合物的功能影响。

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