Department of Chemistry, Western Washington University, Bellingham, WA, United States.
Department of Pediatrics, Aflac Cancer and Blood Disorders Center, Children's Healthcare of Atlanta, Emory University, Atlanta, GA, United States.
Front Immunol. 2021 Jun 10;12:697602. doi: 10.3389/fimmu.2021.697602. eCollection 2021.
Factor VIII (fVIII) is a procoagulant protein that binds to activated factor IX (fIXa) on platelet surfaces to form the intrinsic tenase complex. Due to the high immunogenicity of fVIII, generation of antibody inhibitors is a common occurrence in patients during hemophilia A treatment and spontaneously occurs in acquired hemophilia A patients. Non-classical antibody inhibitors, which block fVIII activation by thrombin and formation of the tenase complex, are the most common anti-C2 domain pathogenic inhibitors in hemophilia A murine models and have been identified in patient plasmas. In this study, we report on the X-ray crystal structure of a B domain-deleted bioengineered fVIII bound to the non-classical antibody inhibitor, G99. While binding to G99 does not disrupt the overall domain architecture of fVIII, the C2 domain undergoes an ~8 Å translocation that is concomitant with breaking multiple domain-domain interactions. Analysis of normalized B-factor values revealed several solvent-exposed loops in the C1 and C2 domains which experience a decrease in thermal motion in the presence of inhibitory antibodies. These results enhance our understanding on the structural nature of binding non-classical inhibitors and provide a structural dynamics-based rationale for cooperativity between anti-C1 and anti-C2 domain inhibitors.
VIII 因子(fVIII)是一种促凝血蛋白,可与血小板表面的活化因子 IX(fIXa)结合,形成内在凝血酶原复合物。由于 fVIII 的高度免疫原性,在接受血友病 A 治疗的患者中,抗体抑制剂的产生是常见的,并且在获得性血友病 A 患者中也会自发产生。非经典抗体抑制剂通过阻止凝血酶激活 fVIII 和 tenase 复合物的形成来阻断 fVIII 的激活,是血友病 A 小鼠模型中最常见的抗 C2 结构域致病抑制剂,并已在患者血浆中鉴定出来。在这项研究中,我们报告了 B 结构域缺失的生物工程 fVIII 与非经典抗体抑制剂 G99 结合的 X 射线晶体结构。虽然与 G99 的结合并不破坏 fVIII 的整体结构域架构,但 C2 结构域发生了约 8 Å 的位移,同时打破了多个结构域-结构域相互作用。对归一化 B 因子值的分析揭示了 C1 和 C2 结构域中的几个溶剂暴露环,在存在抑制性抗体时,这些环的热运动减少。这些结果增强了我们对结合非经典抑制剂的结构本质的理解,并为抗 C1 和抗 C2 结构域抑制剂之间的协同作用提供了基于结构动力学的依据。