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IgG低亲和力受体FcγRIIa的生化分析与结晶

Biochemical analysis and crystallisation of Fc gamma RIIa, the low affinity receptor for IgG.

作者信息

Powell M S, Barton P A, Emmanouilidis D, Wines B D, Neumann G M, Peitersz G A, Maxwell K F, Garrett T P, Hogarth P M

机构信息

Helen M. Schutt Trust Laboratory for Immunology, Austin Research Institute, Austin and Repatriation Medical Centre, Heidelberg, Victoria, Australia.

出版信息

Immunol Lett. 1999 May 3;68(1):17-23. doi: 10.1016/s0165-2478(99)00025-5.

Abstract

Fc gamma RIIa is one of a family of specific cell surface receptors for immunoglobulin. Fc gamma RIIa, which binds immune complexes of certain IgG isotypes, plays important roles in immune homeostasis. However, the precise characteristics of IgG binding and three-dimensional structure of Fc gamma RIIa have not been reported. This study describes the affinity of the Fc gamma RIIa:IgG interaction as well as biochemical characterisation of recombinant Fc gamma RIIa that has been used to generate high quality crystals. Equilibrium binding analysis of the Fc gamma RII:IgG interaction found, IgG3 binds with an affinity of K(D) = 0.6 microM, as expected. Unlike other Fc gamma R, IgG4 also bound to Fc gamma RIIa, K(D) = 3 microM, clearly establishing Fc gamma RIIa as an IgG4 receptor. Biochemical analysis of mammalian and insect cell derived Fc gamma RIIa established the genuine N-terminus with Q being the first amino acid in the sequence Q, A, A, A, P... extending the N-terminus further than previously thought. Furthermore, both potential N-linked glycosylation sites are occupied. Electrospray ionisation mass spectrometry (ESMS) indicate that the N-glycans of baculovirus derived Fc gamma RIIa are core mannose oligosaccharide side chains. Finally, we describe the first crystallisation of diffraction quality crystals of soluble Fc gamma RIIa. Orthorhombic crystals diffract X-rays beyond 2.1 A resolution in the space group P2(1)2(1)2 with cell dimensions a = 78.8 A, b = 100.5 A, c = 27.8 A. This marks a significant advance towards understanding the three-dimensional structure of Fc gamma RIIa and related FcR proteins that share high amino acid identity with Fc gamma RIIa.

摘要

FcγRIIa是免疫球蛋白特异性细胞表面受体家族的一员。FcγRIIa可结合某些IgG同种型的免疫复合物,在免疫稳态中发挥重要作用。然而,尚未有关于FcγRIIa与IgG结合的精确特性及三维结构的报道。本研究描述了FcγRIIa与IgG相互作用的亲和力,以及用于生成高质量晶体的重组FcγRIIa的生化特性。对FcγRII与IgG相互作用的平衡结合分析发现,正如预期的那样,IgG3以K(D)=0.6微摩尔的亲和力结合。与其他FcγR不同,IgG4也与FcγRIIa结合,K(D)=3微摩尔,明确证实FcγRIIa是一种IgG4受体。对哺乳动物和昆虫细胞来源的FcγRIIa进行生化分析确定了真正的N端,序列为Q、A、A、A、P……中Q是第一个氨基酸,其N端延伸比之前认为的更远。此外,两个潜在的N-糖基化位点均被占据。电喷雾电离质谱(ESMS)表明杆状病毒来源的FcγRIIa的N-聚糖是核心甘露糖寡糖侧链。最后,我们描述了可溶性FcγRIIa衍射质量晶体的首次结晶。正交晶体在空间群P2(1)2(1)2中,细胞尺寸a = 78.8埃、b = 100.5埃、c = 27.8埃时,可将X射线衍射至2.1埃以上分辨率。这标志着在理解FcγRIIa及与FcγRIIa具有高氨基酸同一性的相关FcR蛋白的三维结构方面取得了重大进展。

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