Shopes B, Weetall M, Holowka D, Baird B
Department of Cell Biology, Stanford University Medical School, CA 94303.
J Immunol. 1990 Dec 1;145(11):3842-8.
We have constructed a set of chimeric Ig by exchanging corresponding H chain C domains between human (hu) IgG1 and murine (m) IgE. We used this set of Ig to dissect the interaction of individual Ig domains with human Fc gamma receptors. Only one of the chimeras, epsilon/C gamma 2,3 (an mIgE with C epsilon 3 and C epsilon 4 replaced by C gamma 2 and C gamma 3 from huIgG1), binds tightly to the human Fc gamma RI on U937 cells. We found that epsilon/C gamma 2,3 has only twofold lower affinity for Fc gamma RI as compared to huIgG1. The gamma/C epsilon 4 (huIgG1 with C epsilon 4 replacing C gamma 3) binds weakly to Fc gamma RI. The other chimeric Ig, epsilon/C gamma 3, epsilon/C gamma 2, and gamma/C epsilon 3, as well as mIgE do not bind detectably to Fc gamma RI. From these data we conclude that the C gamma 2 domain is crucial for binding and contains the majority of the binding site for Fc gamma RI on IgG1. The C gamma 3 domain makes a smaller contribution to the binding, and the C gamma 1 domain and the hinge region have very little effect on the Fc gamma RI-IgG1 interaction. The chimeric epsilon/C gamma 2,3 and huIgG1 both mediate the formation of rosettes between K562 cells and antigen-sensitized E with similar concentration dependences. These results suggest similar ability to bind to Fc gamma RII. The other chimeric Ig do not cause rosettes in this assay system. Hence, both C gamma 2 and C gamma 3 seem to be required for binding to Fc gamma RII, but the C gamma 1-hinge region has no detectable effect.
我们通过在人(hu)IgG1和鼠(m)IgE之间交换相应的重链C结构域构建了一组嵌合Ig。我们使用这组Ig来剖析各个Ig结构域与人类Fcγ受体的相互作用。只有一种嵌合体,即ε/Cγ2,3(一种mIgE,其Cε3和Cε4被来自huIgG1的Cγ2和Cγ3取代),能紧密结合U937细胞上的人类FcγRI。我们发现,与huIgG1相比,ε/Cγ2,3对FcγRI的亲和力仅低两倍。γ/Cε4(huIgG1,Cε4取代Cγ3)与FcγRI的结合较弱。其他嵌合Ig,ε/Cγ3、ε/Cγ2和γ/Cε3,以及mIgE与FcγRI没有可检测到的结合。从这些数据我们得出结论,Cγ2结构域对于结合至关重要,并且包含IgG1上FcγRI结合位点的大部分。Cγ3结构域对结合的贡献较小,Cγ1结构域和铰链区对FcγRI-IgG1相互作用的影响很小。嵌合的ε/Cγ2,3和huIgG1都介导K562细胞与抗原致敏的E之间形成玫瑰花结,且具有相似的浓度依赖性。这些结果表明它们与FcγRII结合的能力相似。其他嵌合Ig在该检测系统中不会导致形成玫瑰花结。因此,似乎Cγ2和Cγ3对于与FcγRII结合都是必需的,但Cγ1-铰链区没有可检测到的影响。