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无端转座:非长末端重复序列逆转座元件

Transposing without ends: the non-LTR retrotransposable elements.

作者信息

Eickbush T H

机构信息

Department of Biology, University of Rochester, NY 14627.

出版信息

New Biol. 1992 May;4(5):430-40.

PMID:1325183
Abstract

Transposable elements have been discovered in animals, plants, fungi, and protozoans which contain open reading frames similar to the gag and pol genes of retroviruses and retrotransposons but which lack long terminal repeats (LTRs). Recent experiments have shown that these non-LTR elements [also called poly(A) type and LINE-like elements] encode functional reverse transcriptase and replicate via an RNA intermediate. Based on phylogenetic analysis of their encoded reverse transcriptase sequences, the non-LTR retrotransposons are the likely progenitors of retroviruses and LTR retrotransposons. Because retroviruses and LTR retrotransposons depend upon their LTRs for key steps in both transcription and integration, the mechanisms utilized by the non-LTR retrotransposons must be fundamentally different. Internal promoter sequences have been found in several non-LTR elements that initiate transcription upstream at the first nucleotide. Current models for retrotransposition of non-LTR elements propose that the 3' ends of staggered nicks at the chromosomal insertion site serve as primers for first- and second-staggered nicks at the chromosomal insertion site serve as primers for first- and second-strand synthesis from the RNA template. These models suggest that the enzymatic machinery of non-LTR elements is likely to be responsible for the integration of SINEs and processed pseudogenes.

摘要

在动物、植物、真菌和原生动物中已发现转座元件,它们含有与逆转录病毒和逆转录转座子的gag和pol基因相似的开放阅读框,但缺乏长末端重复序列(LTR)。最近的实验表明,这些非LTR元件(也称为聚腺苷酸类型和类LINE元件)编码功能性逆转录酶,并通过RNA中间体进行复制。基于对其编码的逆转录酶序列的系统发育分析,非LTR逆转录转座子可能是逆转录病毒和LTR逆转录转座子的祖先。由于逆转录病毒和LTR逆转录转座子在转录和整合的关键步骤中依赖于它们的LTR,因此非LTR逆转录转座子所利用的机制必然有根本的不同。在几个非LTR元件中发现了内部启动子序列,这些序列在第一个核苷酸的上游启动转录。目前关于非LTR元件逆转座的模型提出,染色体插入位点处交错切口的3'末端作为RNA模板进行第一链和第二链合成的引物。这些模型表明,非LTR元件的酶促机制可能负责SINE和加工假基因的整合。

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