Department of Pediatrics, Nara Medical University, Kashihara, Nara, Japan.
Thromb Haemost. 2018 May;118(5):830-841. doi: 10.1055/s-0038-1637745. Epub 2018 Apr 3.
The link between factor (F)VIII and FX is essential for optimum activity of the tenase complex. The interactive site(s) in FVIII for FX remains to be completely clarified, however. We investigated the FVIII A2 domain-FX association that was speculated from inhibitory mechanism(s) by an anti-A2 autoantibody. SDS-PAGE demonstrated that the purified inhibitor IgG recognizing residues 373-562 blocked FXa cleavage at Arg372 in FVIII, and surface-plasmon resonance (SPR)-based assays showed that intact A2 subunit directly bound to FX (; 63 nM). The FVIII structure model indicated possible FX-binding site(s) in residues 400-429 in A2. One peptide corresponding to residues 400-409 competitively inhibited both the A2-FX binding and FVIIIa/FIXa-dependent FXa generation. Covalent cross-linking was observed between this peptide and FX following reaction with EDC (1-ethyl-3-(3-dimethylaminopropyl)-carbodiimide) using SDS-PAGE. K408 and S409 were not evident in N-terminal sequence analysis of the cross-linked product, suggesting that two residues participated in cross-link formation. SPR-based assays using recombinant FVIII mutants with one or both residues substituted to alanine demonstrated that K408A and K408A/S409A had approximately fourfold high values of wild-type (WT-)FVIII. FXa cleavages at Arg372 in both mutants were significantly delayed, suggesting a contribution of K408 for FXa cleavage at Arg372. Furthermore, FXa generation assays with these mutants demonstrated that the values were 1.4- to 1.7-fold greater, and overall catalytic efficiency (/) was 0.49- to 0.89-fold lower than with WT-FVIII, suggesting a significant contribution of K408 for FVIII-FX interaction in tenase assembly. We concluded that the K408 in the A2 domain provided an interactive-site for FX.
FVIII 因子与 FX 之间的连接对于 tenase 复合物的最佳活性至关重要。然而,FVIII 中用于 FX 的相互作用位点仍未完全阐明。我们研究了推测来自抗 A2 自身抗体的抑制机制的 FVIII A2 结构域-FX 关联。SDS-PAGE 表明,识别残基 373-562 的纯化抑制剂 IgG 阻断了 FVIII 中 FXa 在 Arg372 的裂解,表面等离子体共振(SPR)为基础的测定表明完整的 A2 亚基直接与 FX 结合(; 63 nM)。FVIII 结构模型表明 A2 中残基 400-429 处可能存在 FX 结合位点。与残基 400-409 对应的一个肽竞争性抑制 A2-FX 结合和 FVIIIa/FIXa 依赖性 FXa 生成。使用 SDS-PAGE 观察到在用 EDC(1-乙基-3-(3-二甲基氨基丙基)-碳二亚胺)反应后,该肽与 FX 之间发生共价交联。交联产物的 N 端序列分析中未发现 K408 和 S409,表明两个残基参与了交联形成。使用一个或两个残基取代为丙氨酸的重组 FVIII 突变体进行 SPR 测定表明,K408A 和 K408A/S409A 的 值比野生型(WT-)FVIII 约高四倍。这两种突变体中 FXa 在 Arg372 的裂解均明显延迟,表明 K408 有助于 FXa 在 Arg372 的裂解。此外,使用这些突变体进行 FXa 生成测定表明, 值增加了 1.4 到 1.7 倍,总体催化效率(/)降低了 0.49 到 0.89 倍,与 WT-FVIII 相比,这表明 K408 对 tenase 组装中 FVIII-FX 相互作用有重要贡献。我们得出结论,A2 结构域中的 K408 为 FX 提供了一个相互作用位点。