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首页> 外文期刊>Molecular and Cellular Biology >Elevated recombination in immortal human cells is mediated by HsRAD51 recombinase.
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Elevated recombination in immortal human cells is mediated by HsRAD51 recombinase.

机译:HsRAD51重组酶介导永生人类细胞中的重组增加。

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摘要

Normal diploid cells have a limited replicative potential in culture, with progressively increasing interdivision time. Rarely, cell lines arise which can divide indefinitely; like tumor cells, such "immortal" lines display frequent chromosomal aberrations which may reflect high rates of recombination. Recombination frequencies within a plasmid substrate were 3.5-fold higher in nine immortal human cell lines than in six untransformed cell strains. Expression of HsRAD51, a human homolog of the yeast RAD51 and Escherichia coli recA recombinase genes, was 4.5-fold higher in immortal cell lines than in mortal cells. Stable transformation of human fibroblasts with simian virus 40 large T antigen prior to cell immortalization increased both chromosomal recombination and the level of HsRAD51 transcripts by two- to fivefold. T-antigen induction of recombination was efficiently blocked by introduction of HsRAD51 antisense (but not control) oligonucleotides spanning the initiation codon, implying that HsRAD51 expression mediates augmented recombination. Since p53 binds and inactivates HsRAD51, T-antigen-p53 association may block such inactivation and liberate HsRAD51. Upregulation of HsRAD51 transcripts in T-antigen-transformed and other immortal cells suggests that recombinase activation can also occur at the RNA level and may facilitate cell transformation to immortality.
机译:正常的二倍体细胞在培养中具有有限的复制潜能,随着间隔时间的增加。很少会出现细胞系,它们可以无限期分裂。像肿瘤细胞一样,这种“永生”系显示出频繁的染色体畸变,可能反映了高重组率。在9种永生人类细胞系中,质粒底物内的重组频率比在6种未转化的细胞株中高3.5倍。 HsRAD51(酵母RAD51和大肠杆菌recA重组酶基因的人类同源物)的表达在永生细胞系中比在凡人细胞中高4.5倍。在细胞永生化之前,用猿猴病毒40大T抗原稳定转化人成纤维细胞,可使染色体重组和HsRAD51转录本的水平提高2到5倍。通过引入跨越起始密码子的HsRAD51反义(而非对照)寡核苷酸可有效地阻止T抗原重组的重组,这暗示HsRAD51表达介导了增强的重组。由于p53结合并使HsRAD51失活,因此T抗原p53的结合可能会阻止这种失活并释放HsRAD51。 HsRAD51转录本在T抗原转化的和其他永生细胞中的上调表明重组酶激活也可以在RNA水平发生,并可能促进细胞转化为永生。

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