首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Genomic clone for sandbar shark lambda light chain: generation of diversity in the absence of gene rearrangement.
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Genomic clone for sandbar shark lambda light chain: generation of diversity in the absence of gene rearrangement.

机译:沙洲鲨鱼λ轻链的基因组克隆:在没有基因重排的情况下产生多样性。

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摘要

While the general structure of immunoglobulin chains has remained relatively unchanged throughout evolution, the organization of the genes encoding these molecules differs substantially. To understand how the rearranging immunoglobulin system arose, it is necessary to examine living representatives of the most early vertebrate phyla. Elasmo-branches, which include the sharks, skates, and rays, are the most primitive phylogenetic class of vertebrates from which immunoglobulin DNA sequences have been obtained. In the sandbar shark (Carcharhinus plumbeus), the genes are arranged in individual clusters in which a single variable (V), joining (J), and constant (C) region gene, along with upstream regulatory elements, span a distance of approximately 4.4 kb or approximately 5.8 kb. We report the complete sequence of a genomic clone encoding sandbar shark lambda light chain. A unique finding of our study is that the V and J genes are fused in the germ line. Three additional clones have been shown by DNA sequencing to also have fused V and J genes. The four clones have complementarity-determining regions 3 of various lengths and amino acid sequence variability similar to the products of rearranged genes. Furthermore, analysis by polymerase chain reaction technology revealed an additional 26 genomic clones demonstrating fusion of the V and J segments. Therefore, VJ fusion is the prominent organizational feature of sandbar shark immunoglobulin light chain genes. This finding raises questions concerning the necessity of recombination to produce an antibody repertoire capable of reacting against a diverse array of antigens.
机译:尽管免疫球蛋白链的总体结构在整个进化过程中都保持相对不变,但是编码这些分子的基因的组织却大不相同。要了解如何重新排列免疫球蛋白系统,必须检查最早期脊椎动物门的活体代表。包括鲨鱼,溜冰鞋和rays鱼在内的弹性分支是脊椎动物的最原始的系统发育类别,从中已经获得了免疫球蛋白DNA序列。在沙洲鲨(Carcharhinus plumbeus)中,基因排列在单个簇中,其中单个变量(V),连接(J)和恒定(C)区域基因以及上游调控元件的距离大约为4.4 kb或大约5.8 kb。我们报告编码沙洲鲨鱼λ轻链的基因组克隆的完整序列。我们研究的独特发现是V和J基因在种系中融合。 DNA测序显示另外三个克隆也融合了V和J基因。这四个克隆具有各种长度的互补决定区3,其氨基酸序列变异性与重排基因的产物相似。此外,通过聚合酶链反应技术的分析揭示了另外的26个基因组克隆,证明了V和J片段的融合。因此,VJ融合是沙洲鲨免疫球蛋白轻链基因的突出组织特征。该发现提出了有关重组以产生能够与多种抗原反应的抗体库的必要性的问题。

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