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短散在重复序列和长散在重复序列:恩将仇报的本事。

SINEs and LINEs: the art of biting the hand that feeds you.

作者信息

Weiner Alan M

机构信息

Department of Biochemistry, HSB J417, University of Washington, Box 357350, Seattle, WA 98195-7350, USA.

出版信息

Curr Opin Cell Biol. 2002 Jun;14(3):343-50. doi: 10.1016/s0955-0674(02)00338-1.

Abstract

SINEs and LINEs are short and long interspersed retrotransposable elements, respectively, that invade new genomic sites using RNA intermediates. SINEs and LINEs are found in almost all eukaryotes (although not in Saccharomyces cerevisiae) and together account for at least 34% of the human genome. The noncoding SINEs depend on reverse transcriptase and endonuclease functions encoded by partner LINEs. With the completion of many genome sequences, including our own, the database of SINEs and LINEs has taken a great leap forward. The new data pose new questions that can only be answered by detailed studies of the mechanism of retroposition. Current work ranges from the biochemistry of reverse transcription and integration invitro, target site selection in vivo, nucleocytoplasmic transport of the RNA and ribonucleoprotein intermediates, and mechanisms of genomic turnover. Two particularly exciting new ideas are that SINEs may help cells survive physiological stress, and that the evolution of SINEs and LINEs has been shaped by the forces of RNA interference. Taken together, these studies promise to explain the birth and death of SINEs and LINEs, and the contribution of these repetitive sequence families to the evolution of genomes.

摘要

短散在核元件(SINEs)和长散在核元件(LINEs)分别是短的和长的散布重复反转录转座元件,它们利用RNA中间体侵入新的基因组位点。几乎在所有真核生物中都能发现SINEs和LINEs(尽管酿酒酵母中没有),它们总共占人类基因组的至少34%。非编码SINEs依赖于与其配对的LINEs所编码的逆转录酶和内切核酸酶功能。随着包括我们自己的基因组在内的许多基因组序列的完成,SINEs和LINEs的数据库有了巨大的飞跃。新的数据提出了新的问题,只有通过对反转录转座机制的详细研究才能回答。目前的工作范围包括体外逆转录和整合的生物化学、体内靶位点选择、RNA和核糖核蛋白中间体的核质运输以及基因组更新机制。两个特别令人兴奋的新观点是,SINEs可能有助于细胞在生理应激下存活,以及SINEs和LINEs的进化受到RNA干扰力量的影响。综上所述,这些研究有望解释SINEs和LINEs的产生与消亡,以及这些重复序列家族对基因组进化的贡献。

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