Gregory L, Davis K G, Sheth B, Boyd J, Jefferis R, Nave C, Burton D R
Department of Biochemistry, University of Sheffield, U.K.
Mol Immunol. 1987 Aug;24(8):821-9. doi: 10.1016/0161-5890(87)90184-2.
The solution conformations of human immunoglobulin G subclass molecules have been investigated by sedimentation and small-angle X-ray scattering techniques. Both methods qualitatively indicate IgG3 to be an extended molecule relative to IgG1. Sedimentation data have been collected for a number of paraproteins of all four subclasses and the hinge-deleted IgG1Dob protein. The known crystal structure of Dob allows the use of this protein as a basis for the proposal of models of the average conformations of IgG subclasses which are consistent with experimental s(0)20,w values. IgG1 is suggested to have a hinge length of 0-15 A and non-coplanar Fab arms; IgG2 to be effectively hingeless with folded-back Fab arms; IgG3 to have an extended hinge of the order of 100 A and IgG4 to be effectively hingeless and T-shaped. The possible correlation of these conformations with subclass function is discussed.
已通过沉降和小角X射线散射技术研究了人免疫球蛋白G亚类分子的溶液构象。两种方法定性地表明,相对于IgG1,IgG3是一种伸展的分子。已收集了所有四个亚类的多种副蛋白以及缺失铰链区的IgG1Dob蛋白的沉降数据。已知的Dob晶体结构使得可以将该蛋白用作提出与实验s(0)20,w值一致的IgG亚类平均构象模型的基础。建议IgG1的铰链长度为0-15埃且Fab臂非共面;IgG2实际上无铰链且Fab臂向后折叠;IgG3具有约100埃的伸展铰链,IgG4实际上无铰链且呈T形。讨论了这些构象与亚类功能之间可能的相关性。