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癌症/睾丸抗原基因家族的进化起源和人类特异性扩张。

Evolutionary origin and human-specific expansion of a cancer/testis antigen gene family.

机构信息

Department of Human Evolutionary Biology, Graduate School of Art and Science, Harvard University

State Key Laboratory of Genetic Resources and Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China

出版信息

Mol Biol Evol. 2014 Sep;31(9):2365-75. doi: 10.1093/molbev/msu188. Epub 2014 Jun 9.

Abstract

Cancer/testis (CT) antigens are encoded by germline genes and are aberrantly expressed in a number of human cancers. Interestingly, CT antigens are frequently involved in gene families that are highly expressed in germ cells. Here, we presented an evolutionary analysis of the CTAGE (cutaneous T-cell-lymphoma-associated antigen) gene family to delineate its molecular history and functional significance during primate evolution. Comparisons among human, chimpanzee, gorilla, orangutan, macaque, marmoset, and other mammals show a rapid and primate specific expansion of CTAGE family, which starts with an ancestral retroposition in the haplorhini ancestor. Subsequent DNA-based duplications lead to the prosperity of single-exon CTAGE copies in catarrhines, especially in humans. Positive selection was identified on the single-exon copies in comparison with functional constraint on the multiexon copies. Further sequence analysis suggests that the newly derived CTAGE genes may obtain regulatory elements from long terminal repeats. Our result indicates the dynamic evolution of primate genomes, and the recent expansion of this CT antigen family in humans may confer advantageous phenotypic traits during early human evolution.

摘要

癌症/睾丸抗原是由胚系基因编码的,在许多人类癌症中异常表达。有趣的是,CT 抗原通常涉及在生殖细胞中高度表达的基因家族。在这里,我们对 CTAGE(皮肤 T 细胞淋巴瘤相关抗原)基因家族进行了进化分析,以描绘其在灵长类动物进化过程中的分子历史和功能意义。人类、黑猩猩、大猩猩、猩猩、猕猴、狨猴和其他哺乳动物之间的比较表明,CTAGE 家族在灵长类动物中迅速且具有特异性扩张,这始于单系祖先中的一个祖先逆转录转座。随后的基于 DNA 的复制导致在反刍动物中,尤其是在人类中,单外显子 CTAGE 拷贝的繁荣。与多外显子拷贝的功能约束相比,在单外显子拷贝上鉴定到了正选择。进一步的序列分析表明,新衍生的 CTAGE 基因可能从长末端重复获得调节元件。我们的结果表明了灵长类基因组的动态进化,并且人类中这种 CT 抗原家族的最近扩张可能在早期人类进化过程中赋予了有利的表型特征。

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