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LINE-1扩增伴随着啮齿动物基因组的爆发式重排。

LINE-1 amplification accompanies explosive genome repatterning in rodents.

作者信息

Dobigny Gauthier, Ozouf-Costaz Catherine, Waters Paul D, Bonillo Céline, Coutanceau Jean-Pierre, Volobouev Vitaly

机构信息

Laboratoire Origine, Structure et Evolution de la Biodiversité, Muséum National d'Histoire Naturelle, 55, rue Buffon, F75005, Paris, France.

出版信息

Chromosome Res. 2004;12(8):787-93. doi: 10.1007/s10577-005-5265-y.

Abstract

Transposable elements (TEs) sometimes induce karyotypic changes following recombination, breakage and rearrangement. We used FISH and Southern blot analyses to investigate the amount and distribution of LINE-1 retrotransposons in rodents (genus Taterillus, Muridae, Gerbillinae) that have recently undergone an important genome repatterning. Our results were interpreted in a known phylogenetic framework and clearly showed that LINE-1 elements were greatly amplified and non-randomly distributed in the most rearranged karyotypes. A comparison between FISH and conventional banding patterns provided evidence that LINE-1 insertion sites and chromosome breakpoints were not strongly correlated, thus suggesting that LINE-1 amplification subsequently accompanied Taterillus chromosome evolution. Similar patterns are observed in some cases of genomic stresses (hybrid genomes, cancer and DNA-damaged cells) and usually associated with DNA hypomethylation. We propose that intensively repatterned genomes face transient stress phases during which some epigenetic features, such as DNA methylation, are relaxed, thus allowing TE amplification.

摘要

转座元件(TEs)有时会在重组、断裂和重排后诱导核型变化。我们使用荧光原位杂交(FISH)和Southern印迹分析来研究近期经历了重要基因组重排的啮齿动物(鳞掌沙鼠属,鼠科,沙鼠亚科)中LINE-1逆转录转座子的数量和分布。我们的结果在已知的系统发育框架中进行了解释,清楚地表明LINE-1元件在重排程度最高的核型中大量扩增且分布非随机。FISH与传统带型模式之间的比较提供了证据,表明LINE-1插入位点与染色体断点没有强烈相关性,因此表明LINE-1扩增随后伴随着鳞掌沙鼠染色体的进化。在一些基因组应激情况(杂交基因组、癌症和DNA损伤细胞)中也观察到类似模式,并且通常与DNA低甲基化相关。我们提出,经历强烈重排的基因组会面临短暂的应激阶段,在此期间一些表观遗传特征,如DNA甲基化,会放松,从而允许转座元件扩增。

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