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von Willebrand 因子 N 末端丝氨酸 764 和赖氨酸 773 在与凝血因子 VIII 形成复合物中的不同作用。

Distinct roles of Ser-764 and Lys-773 at the N terminus of von Willebrand factor in complex assembly with coagulation factor VIII.

机构信息

Department of Plasma Proteins, Sanquin Research, 1066 CX Amsterdam, The Netherlands.

出版信息

J Biol Chem. 2013 Jan 4;288(1):393-400. doi: 10.1074/jbc.M112.400572. Epub 2012 Nov 20.

Abstract

Complex formation between coagulation factor VIII (FVIII) and von Willebrand factor (VWF) is of critical importance to protect FVIII from rapid in vivo clearance and degradation. We have now employed a chemical footprinting approach to identify regions on VWF involved in FVIII binding. To this end, lysine amino acid residues of VWF were chemically modified in the presence of FVIII or activated FVIII, which does not bind VWF. Nano-LC-MS analysis showed that the lysine residues of almost all identified VWF peptides were not differentially modified upon incubation of VWF with FVIII or activated FVIII. However, Lys-773 of peptide Ser-766-Leu-774 was protected from chemical modification in the presence of FVIII. In addition, peptide Ser-764-Arg-782, which comprises the first 19 amino acid residues of mature VWF, showed a differential modification of both Lys-773 and the α-amino group of Ser-764. To verify the role of Lys-773 and the N-terminal Ser-764 in FVIII binding, we employed VWF variants in which either Lys-773 or Ser-764 was replaced with Ala. Surface plasmon resonance analysis and competition studies revealed that VWF(K773A) exhibited reduced binding to FVIII and the FVIII light chain, which harbors the VWF-binding site. In contrast, VWF(S764A) revealed more effective binding to FVIII and the FVIII light chain compared with WT VWF. The results of our study show that the N terminus of VWF is critical for the interaction with FVIII and that Ser-764 and Lys-773 have opposite roles in the binding mechanism.

摘要

FVIII 与 von Willebrand 因子(VWF)之间的复合物形成对于保护 FVIII 免受体内快速清除和降解至关重要。我们现在采用化学足迹法来鉴定 VWF 中与 FVIII 结合相关的区域。为此,在存在 FVIII 或不与 VWF 结合的激活型 FVIII 的情况下,化学修饰了 VWF 的赖氨酸氨基酸残基。纳升 LC-MS 分析表明,在与 FVIII 或激活型 FVIII 孵育时,几乎所有鉴定出的 VWF 肽的赖氨酸残基均未发生差异修饰。然而,在 FVIII 存在下,肽 Ser-766-Leu-774 的 Lys-773 残基受到化学修饰的保护。此外,包含成熟 VWF 的前 19 个氨基酸残基的肽 Ser-764-Arg-782 表现出 Lys-773 和 Ser-764 的α-氨基的差异修饰。为了验证 Lys-773 和 N 末端 Ser-764 在 FVIII 结合中的作用,我们使用了 VWF 变体,其中 Lys-773 或 Ser-764 被替换为 Ala。表面等离子体共振分析和竞争研究表明,VWF(K773A)与 FVIII 和携带 VWF 结合位点的 FVIII 轻链的结合减少。相比之下,与 WT VWF 相比,VWF(S764A)与 FVIII 和 FVIII 轻链的结合更有效。我们的研究结果表明,VWF 的 N 末端对于与 FVIII 的相互作用至关重要,Ser-764 和 Lys-773 在结合机制中起相反的作用。

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