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[免疫球蛋白基因与抗体多样性的起源]

[Immunoglobulin genes and the origin of antibody diversity].

作者信息

Lambin P

机构信息

Laboratoire d'immunochimie, Institut national de transfusion sanguine, Paris.

出版信息

Rev Fr Transfus Hemobiol. 1992 Jan;35(1):47-65. doi: 10.1016/s1140-4639(05)80030-9.

Abstract

The genes encoding for the heavy, Kappa and Lambda chains of immunoglobulins are located on separate chromosomes. Each gene consists of many segments encoding for variable (V) and constant (C) domains of immunoglobulins. Each V gene is assembled from individual segments of germline, VL and JL for the light chains, VH, D and JH for the heavy chains. There are several hundreds VH and VL segments and a small number of D and JH segments. A complete VH gene (VH-D-JH combination) is first expressed in association with the nearest C region gene (C mu) but a class switch recombination may occur, enabling the same VH to associate with C regions of gamma, alpha or epsilon type. The generation of the antibody diversity is explained by several mechanisms: a) the rearrangements of the segments encoding for the variable domains (related to the presence of many segments and the joining variability between these segments); b) the combinations between heavy and light chains; c) the occurrence of somatic mutations in the DNA encoding for VH and VL gene segments.

摘要

编码免疫球蛋白重链、κ链和λ链的基因位于不同的染色体上。每个基因由许多编码免疫球蛋白可变(V)区和恒定(C)区的片段组成。每个V基因由种系的单个片段组装而成,轻链的VL和JL片段,重链的VH、D和JH片段。有数百个VH和VL片段以及少量的D和JH片段。完整的VH基因(VH-D-JH组合)首先与最近的C区基因(Cμ)一起表达,但可能会发生类别转换重排,使同一个VH能够与γ、α或ε型的C区结合。抗体多样性的产生可通过多种机制来解释:a)编码可变区的片段重排(与许多片段的存在以及这些片段之间连接的变异性有关);b)重链和轻链之间的组合;c)编码VH和VL基因片段的DNA中发生体细胞突变。

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