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重组兔分泌型免疫球蛋白分子:具有母本(父本)可变区同种异型和父本(母本)恒定区同种异型的α链。

Recombinant rabbit secretory immunoglobulin molecules: alpha chains with maternal (paternal) variable-region allotypes and paternal (maternal) constant-region allotypes.

作者信息

Knight K L, Malek T R, Hanly W C

出版信息

Proc Natl Acad Sci U S A. 1974 Apr;71(4):1169-73. doi: 10.1073/pnas.71.4.1169.

Abstract

A population of IgA molecules having heavy chains coded by two parental chromosomes in trans position has been identified in rabbits heterozygous at both the V(H)a locus, which controls allotypic specificities on the variable part of heavy chains, and the C(alpha)g locus, which controls allotypic specificities on the constant part of alpha chains. These recombinant molecules have alpha-chain allotypic specificities controlled by both the maternal V(H)a gene and the paternal C(alpha)g gene or conversely, the paternal V(H)a gene and the maternal C(alpha)g gene. These recombinant molecules were found in F(ab)(2alpha) fractions obtained after passage of F(ab)(2alpha) preparations through immunosorbent columns designed to remove one population of F(ab)(2alpha) molecules, i.e., g74- or g75-type molecules. The effluent F(ab)(2alpha) fractions were then examined by radioprecipitation methods for allotypic specificities controlled by the V(H)a and C(alpha)g loci. About 40% of the g75 F(ab)(2alpha) molecules from each of three rabbits with the a(1)g(74) and a(2)g(75) allogroups were alg75 recombinants. These alg75 recombinant molecules represented from 2.5-5.6% of the total unfractionated F(ab)(2alpha) sample. The F(ab)(2alpha) fractions from two rabbits with the a(1)g(75) and a(3)g(74) allogroups had from 1.8-8.2% recombinant molecules: some were alg74 recombinants and some were a3g75 recombinants. Somatic recombination as a mechanism responsible for the synthesis of polypeptide chains in which part of the information is obtained from one chromosome and part from the homologous chromosome is discussed.

摘要

在兔中已鉴定出这样一群IgA分子,其重链由两条处于反式位置的亲代染色体编码。这些兔在控制重链可变部分同种异型特异性的V(H)a位点和控制α链恒定部分同种异型特异性的C(α)g位点均为杂合子。这些重组分子具有由母本V(H)a基因和父本C(α)g基因或相反地由父本V(H)a基因和母本C(α)g基因控制的α链同种异型特异性。这些重组分子存在于F(ab)(2α)制剂通过旨在去除一类F(ab)(2α)分子(即g74 - 或g75 - 型分子)的免疫吸附柱后获得的F(ab)(2α)组分中。然后通过放射沉淀法检查流出的F(ab)(2α)组分中由V(H)a和C(α)g位点控制的同种异型特异性。来自具有a(1)g(74)和a(2)g(75)同种异型组的三只兔中每只兔的约40%的g75 F(ab)(2α)分子是alg75重组体。这些alg75重组分子占未分级F(ab)(2α)样品总量的2.5 - 5.6%。来自具有a(1)g(75)和a(3)g(74)同种异型组的两只兔的F(ab)(2α)组分含有1.8 - 8.2%的重组分子:一些是alg74重组体,一些是a3g75重组体。文中讨论了体细胞重组作为一种负责合成多肽链的机制,其中部分信息来自一条染色体,部分来自同源染色体。

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