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人类免疫球蛋白Cε2基因的结构,一种截短的假基因:对其进化起源的启示

Structure of the human immunoglobulin C epsilon 2 gene, a truncated pseudogene: implications for its evolutionary origin.

作者信息

Hisajima H, Nishida Y, Nakai S, Takahashi N, Ueda S, Honjo T

出版信息

Proc Natl Acad Sci U S A. 1983 May;80(10):2995-9. doi: 10.1073/pnas.80.10.2995.

Abstract

Cloning of the overlapping DNA fragments together with Southern hybridization experiments showed the organization of the human C epsilon and C alpha gene cluster as 5'-C epsilon 2-14 kilobases-C alpha 1----C epsilon 1-13 kilobases-C alpha 2-3'. Comparison of the nucleotide sequences of the C epsilon 1 and C epsilon 2 genes revealed that four deletions have taken place in the C epsilon 2 gene and its flanking regions. The three deleted regions in the 5' side of the C epsilon 2 gene are partially filled with shorter inserted sequences. One of them has removed the CH1 and CH2 exons and a portion of the epsilon switch (S epsilon) region. The S epsilon region and the CH4 exon still retain the functional structures, whereas the CH3 exon has been inactivated by deleting its 5' intervening sequence necessary for splicing. The tetranucleotide T-G-G-G (or T-G-G-C), which is usually found in close proximity of the class-switch recombination sites in mouse myelomas, is located 5' to the three deletion sites. The results imply that the mechanism responsible for the heavy chain class-switch recombination might be relevant to the evolutionary mechanism of creation of the truncated C epsilon 2 gene. The other deletion in the 3' flanking region of the C epsilon 2 gene may be due to slipped mispairing of the short direct repeat (C-C-C-C-C) at both ends.

摘要

重叠DNA片段的克隆以及Southern杂交实验表明,人类Cε和Cα基因簇的组织形式为5'-Cε2-14千碱基-Cα1----Cε1-13千碱基-Cα2-3'。Cε1和Cε2基因核苷酸序列的比较显示,Cε2基因及其侧翼区域发生了四处缺失。Cε2基因5'端的三处缺失区域部分被较短的插入序列填充。其中一处缺失移除了CH1和CH2外显子以及一部分ε转换(Sε)区域。Sε区域和CH4外显子仍保留功能结构,而CH3外显子因缺失其剪接所需的5'间隔序列而失活。通常在小鼠骨髓瘤的类别转换重组位点附近发现的四核苷酸T-G-G-G(或T-G-G-C)位于三处缺失位点的5'端。结果表明,负责重链类别转换重组的机制可能与截短的Cε2基因产生的进化机制有关。Cε2基因3'侧翼区域的另一处缺失可能是由于两端短的直接重复序列(C-C-C-C-C)的滑动错配所致。

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