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由于基因 MAST2 的第一个外显子与逆转录转座子 SVA 的融合,形成了一种新的人类转座元件家族。

Novel family of human transposable elements formed due to fusion of the first exon of gene MAST2 with retrotransposon SVA.

机构信息

Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, 117997, Russia.

出版信息

Biochemistry (Mosc). 2009 Dec;74(12):1393-9. doi: 10.1134/s0006297909120153.

Abstract

We identified a novel human-specific family of transposable elements that consists of fused copies of the CpG-island containing the first exon of gene MAST2 and retrotransposon SVA. We propose a mechanism for the formation of this family termed CpG-SVA, comprising 5'-transduction by an SVA insert. After the divergence of human and chimpanzee ancestor lineages, retrotransposon SVA has inserted into the first intron of gene MAST2 in the sense orientation. Due to splicing of an aberrant RNA driven by MAST2 promoter, but terminally processed using SVA polyadenylation signal, the first exon of MAST2 has fused to a spliced 3'-terminal fragment of SVA retrotransposon. The above ancestor CpG-SVA element due to retrotranspositions of its own copies has formed a novel family represented in the human genome by 76 members. Recruitment of a MAST2 CpG island was most likely beneficial to the hybrid retrotransposons because it could significantly increase retrotransposition frequency. Also, we show that human L1 reverse transcriptase adds an extra cytosine residue to the 3' terminus of the nascent first strand of cDNA.

摘要

我们鉴定了一个新型的人类特异性转座元件家族,它由 MAST2 基因第一外显子的 CpG 岛和逆转录转座子 SVA 的融合拷贝组成。我们提出了一种形成这种家族的机制,称为 CpG-SVA,包括由 SVA 插入物介导的 5'-转导。在人类和黑猩猩祖先谱系分歧后,逆转录转座子 SVA 以正向方向插入 MAST2 基因的第一内含子。由于 MAST2 启动子驱动的异常 RNA 的剪接,但使用 SVA 多聚腺苷酸化信号进行末端加工,MAST2 的第一外显子与 SVA 逆转录转座子的拼接 3'-末端片段融合。上述祖先 CpG-SVA 元件由于自身拷贝的逆转录转位,已经形成了一个新的家族,在人类基因组中由 76 个成员代表。MAST2 CpG 岛的招募很可能对杂种逆转录转座子有益,因为它可以显著增加逆转录转位频率。此外,我们还表明,人类 L1 逆转录酶在新合成的 cDNA 第一链的 3'末端添加一个额外的胞嘧啶残基。

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