Wines B D, Powell M S, Parren P W, Barnes N, Hogarth P M
The Helen M. Schutt Laboratory for Immunology, Austin Research Institute, Austin Repatriation Medical Centre, Heidelberg, Victoria, Australia.
J Immunol. 2000 May 15;164(10):5313-8. doi: 10.4049/jimmunol.164.10.5313.
The CH2-CH3 interface of the IgG Fc domain contains the binding sites for a number of Fc receptors including Staphylococcal protein A and the neonatal Fc receptor (FcRn). It has recently been proposed that the CH2-CH3 interface also contains the principal binding site for an isoform of the low affinity IgG Fc receptor II (Fc gamma RIIb). The Fc gamma RI and Fc gamma RII binding sites have previously been mapped to the lower hinge and the adjacent surface of the CH2 domain although contributions of the CH2-CH3 interface to binding have been suggested. This study addresses the question whether the CH2-CH3 interface plays a role in the interaction of IgG with Fc gamma RI and Fc gamma RIIa. We demonstrate that recombinant soluble murine Fc gamma RI and human Fc gamma RIIa did not compete with protein A and FcRn for binding to IgG, and that the CH2-CH3 interface therefore appears not to be involved in Fc gamma RI and Fc gamma RIIa binding. The importance of the lower hinge was confirmed by introducing mutations in the proposed binding site (LL234,235AA) which abrogated binding of recombinant soluble Fc gamma RIIa to human IgG1. We conclude that the lower hinge and the adjacent region of the CH2 domain of IgG Fc is critical for the interaction between Fc gamma RIIa and human IgG, whereas contributions of the CH2-CH3 interface appear to be insignificant.
IgG Fc结构域的CH2-CH3界面包含许多Fc受体的结合位点,包括葡萄球菌蛋白A和新生儿Fc受体(FcRn)。最近有人提出,CH2-CH3界面还包含低亲和力IgG Fc受体II(FcγRIIb)同种型的主要结合位点。尽管有人提出CH2-CH3界面在结合中起作用,但FcγRI和FcγRII的结合位点先前已被定位到CH2结构域的下铰链区和相邻表面。本研究探讨了CH2-CH3界面在IgG与FcγRI和FcγRIIa相互作用中是否起作用的问题。我们证明重组可溶性小鼠FcγRI和人FcγRIIa与蛋白A和FcRn竞争结合IgG,因此CH2-CH3界面似乎不参与FcγRI和FcγRIIa的结合。通过在拟议的结合位点(LL234,235AA)引入突变证实了下铰链区的重要性,该突变消除了重组可溶性FcγRIIa与人IgG1的结合。我们得出结论,IgG Fc的CH2结构域的下铰链区和相邻区域对于FcγRIIa与人IgG之间的相互作用至关重要,而CH2-CH3界面的作用似乎微不足道。