Kiyoshi Masato, Caaveiro Jose M M, Kawai Takeaki, Tashiro Shinya, Ide Teruhiko, Asaoka Yoshiharu, Hatayama Kouta, Tsumoto Kouhei
Department of Bioengineering, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Tokyo 113-8656, Japan.
Department of Medical Genome Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa 277-8562, Japan.
Nat Commun. 2015 Apr 30;6:6866. doi: 10.1038/ncomms7866.
Cell-surface Fcγ receptors mediate innate and adaptive immune responses. Human Fcγ receptor I (hFcγRI) binds IgGs with high affinity and is the only Fcγ receptor that can effectively capture monomeric IgGs. However, the molecular basis of hFcγRI's interaction with Fc has not been determined, limiting our understanding of this major immune receptor. Here we report the crystal structure of a complex between hFcγRI and human Fc, at 1.80 Å resolution, revealing an unique hydrophobic pocket at the surface of hFcγRI perfectly suited for residue Leu235 of Fc, which explains the high affinity of this complex. Structural, kinetic and thermodynamic data demonstrate that the binding mechanism is governed by a combination of non-covalent interactions, bridging water molecules and the dynamic features of Fc. In addition, the hinge region of hFcγRI-bound Fc adopts a straight conformation, potentially orienting the Fab moiety. These findings will stimulate the development of novel therapeutic strategies involving hFcγRI.
细胞表面Fcγ受体介导先天性和适应性免疫反应。人Fcγ受体I(hFcγRI)以高亲和力结合IgG,是唯一能够有效捕获单体IgG的Fcγ受体。然而,hFcγRI与Fc相互作用的分子基础尚未确定,这限制了我们对这一主要免疫受体的理解。在此,我们报道了hFcγRI与人Fc复合物的晶体结构,分辨率为1.80 Å,揭示了hFcγRI表面一个独特的疏水口袋,它与Fc的Leu235残基完美契合,这解释了该复合物的高亲和力。结构、动力学和热力学数据表明,结合机制受非共价相互作用、桥连水分子和Fc动态特征的共同影响。此外,与hFcγRI结合的Fc的铰链区呈直线构象,可能使Fab部分定向。这些发现将推动涉及hFcγRI的新型治疗策略的开发。