Kenniston Jon A, Taylor Brandy M, Conley Gregory P, Cosic Janja, Kopacz Kris J, Lindberg Allison P, Comeau Stephen R, Atkins Kateri, Bullen Jameson, TenHoor Christopher, Adelman Burt A, Sexton Daniel J, Edwards Thomas E, Nixon Andrew E
From Shire, Lexington, Massachusetts 02421,
Dyax Corp., Burlington, Massachusetts 01803.
J Biol Chem. 2017 Oct 20;292(42):17449-17460. doi: 10.1074/jbc.M117.807396. Epub 2017 Sep 6.
The neonatal Fc receptor FcRn plays a critical role in the trafficking of IgGs across tissue barriers and in retaining high circulating concentrations of both IgG and albumin. Although generally beneficial from an immunological perspective in maintaining IgG populations, FcRn can contribute to the pathogenesis of autoimmune disorders when an abnormal immune response targets normal biological components. We previously described a monoclonal antibody (DX-2507) that binds to FcRn with high affinity at both neutral and acidic pH, prevents the simultaneous binding of IgG, and reduces circulating IgG levels in preclinical animal models. Here, we report a 2.5 Å resolution X-ray crystal structure of an FcRn-DX-2507 Fab complex, revealing a nearly complete overlap of the IgG-Fc binding site in FcRn by complementarity-determining regions in DX-2507. This overlap explains how DX-2507 blocks IgG binding to FcRn and thereby shortens IgG half-life by preventing IgGs from recycling back into circulation. Moreover, the complex structure explains how the DX-2507 interaction is pH-insensitive unlike normal Fc interactions and how serum albumin levels are unaffected by DX-2507 binding. These structural studies could inform antibody-based therapeutic approaches for limiting the effects of IgG-mediated autoimmune disease.
新生儿Fc受体FcRn在IgG跨组织屏障的转运以及维持IgG和白蛋白的高循环浓度方面发挥着关键作用。虽然从免疫学角度来看,FcRn在维持IgG群体方面通常是有益的,但当异常免疫反应针对正常生物成分时,FcRn可能会导致自身免疫性疾病的发病机制。我们之前描述了一种单克隆抗体(DX - 2507),它在中性和酸性pH下均能以高亲和力结合FcRn,阻止IgG的同时结合,并在临床前动物模型中降低循环IgG水平。在此,我们报告了FcRn - DX - 2507 Fab复合物的2.5 Å分辨率X射线晶体结构,揭示了DX - 2507中的互补决定区与FcRn中IgG - Fc结合位点几乎完全重叠。这种重叠解释了DX - 2507如何阻断IgG与FcRn的结合,从而通过阻止IgG循环回血液循环来缩短IgG的半衰期。此外,该复合物结构解释了DX - 2507的相互作用为何与正常Fc相互作用不同,对pH不敏感,以及血清白蛋白水平为何不受DX - 2507结合的影响。这些结构研究可为基于抗体的治疗方法提供信息以限制IgG介导的自身免疫性疾病的影响。