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哺乳动物非长末端重复序列逆转座子:无论好坏,无论患病还是健康。

Mammalian non-LTR retrotransposons: for better or worse, in sickness and in health.

作者信息

Belancio Victoria P, Hedges Dale J, Deininger Prescott

机构信息

Tulane Cancer Center and Department of Epidemiology, Tulane University Health Sciences Center, New Orleans, Louisiana 70112, USA.

出版信息

Genome Res. 2008 Mar;18(3):343-58. doi: 10.1101/gr.5558208. Epub 2008 Feb 6.

Abstract

Transposable elements (TEs) have shared an exceptionally long coexistence with their host organisms and have come to occupy a significant fraction of eukaryotic genomes. The bulk of the expansion occurring within mammalian genomes has arisen from the activity of type I retrotransposons, which amplify in a "copy-and-paste" fashion through an RNA intermediate. For better or worse, the sequences of these retrotransposons are now wedded to the genomes of their mammalian hosts. Although there are several reported instances of the positive contribution of mobile elements to their host genomes, these discoveries have occurred alongside growing evidence of the role of TEs in human disease and genetic instability. Here we examine, with a particular emphasis on human retrotransposon activity, several newly discovered aspects of mammalian retrotransposon biology. We consider their potential impact on host biology as well as their ultimate implications for the nature of the TE-host relationship.

摘要

转座元件(TEs)与其宿主生物有着极其漫长的共存历史,并且已在真核生物基因组中占据了相当大的比例。哺乳动物基因组内发生的大部分扩增都源于I型逆转录转座子的活动,这些转座子通过RNA中间体以“复制粘贴”的方式进行扩增。不管是好是坏,这些逆转录转座子的序列现在已与它们的哺乳动物宿主基因组紧密相连。尽管有几例报道表明移动元件对其宿主基因组有积极贡献,但这些发现的同时,越来越多的证据表明转座元件在人类疾病和遗传不稳定性中发挥作用。在这里,我们特别关注人类逆转录转座子的活性,研究哺乳动物逆转录转座子生物学的几个新发现的方面。我们考虑它们对宿主生物学的潜在影响以及它们对转座元件与宿主关系本质的最终影响。

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