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生殖系转录本由一种类似Dicer的蛋白质加工,该蛋白质对于嗜热四膜虫发育程序性基因组重排至关重要。

Germ line transcripts are processed by a Dicer-like protein that is essential for developmentally programmed genome rearrangements of Tetrahymena thermophila.

作者信息

Malone Colin D, Anderson Alissa M, Motl Jason A, Rexer Charles H, Chalker Douglas L

机构信息

Biology Department, Washington University, St. Louis, MO 63130, USA.

出版信息

Mol Cell Biol. 2005 Oct;25(20):9151-64. doi: 10.1128/MCB.25.20.9151-9164.2005.

Abstract

Abundant approximately 28-nucleotide RNAs that are thought to direct histone H3 lysine 9 (H3K9) methylation and promote the elimination of nearly 15 Mbp of DNA from the developing somatic genome are generated during Tetrahymena thermophila conjugation. To identify the protein(s) that generates these small RNAs, we studied three Dicer-related genes encoded within the Tetrahymena genome, two that contain both RNase III and RNA helicase motifs, Dicer 1 (DCR1) and DCR2, and a third that lacks the helicase domain, Dicer-like 1 (DCL1). DCL1 is expressed upon the initiation of conjugation, and the protein localizes to meiotic micronuclei when bidirectional germ line transcription occurs and small RNAs begin to accumulate. Cells in which we disrupted the DCL1 gene (DeltaDCL1) grew normally and initiated conjugation as wild-type cells but arrested near the end of development and eventually died, unable to resume vegetative growth. These DeltaDCL1 cells failed to generate the abundant small RNAs but instead accumulated germ line-limited transcripts. Together, our findings demonstrate that these transcripts are the precursors of the small RNAs and that DCL1 performs RNA processing within the micronucleus. Postconjugation DeltaDCL1 cells die without eliminating the germ line-limited DNA sequences from their newly formed somatic macronuclei, a result that shows that this Dicer-related gene is required for programmed DNA rearrangements. Surprisingly, DeltaDCL1 cells were not deficient in overall H3K9 methylation, but this modification was not enriched on germ line-limited sequences as it is in wild-type cells, which clearly demonstrates that these small RNAs are essential for its targeting to specific loci.

摘要

嗜热四膜虫接合过程中会产生大量约28个核苷酸的RNA,这些RNA被认为可指导组蛋白H3赖氨酸9(H3K9)甲基化,并促进发育中的体细胞基因组中近15兆碱基DNA的消除。为了鉴定产生这些小RNA的蛋白质,我们研究了四膜虫基因组中编码的三个与Dicer相关的基因,其中两个基因同时包含RNase III和RNA解旋酶基序,即Dicer 1(DCR1)和DCR2,另一个基因缺少解旋酶结构域,即Dicer-like 1(DCL1)。DCL1在接合开始时表达,当双向生殖系转录发生且小RNA开始积累时,该蛋白定位于减数分裂微核。我们破坏DCL1基因的细胞(DeltaDCL1)生长正常,并且像野生型细胞一样开始接合,但在发育接近尾声时停滞并最终死亡,无法恢复营养生长。这些DeltaDCL1细胞未能产生大量的小RNA,而是积累了生殖系有限的转录本。总之,我们的研究结果表明,这些转录本是小RNA的前体,并且DCL1在微核内进行RNA加工。接合后,DeltaDCL1细胞死亡,却未从其新形成的体大核中消除生殖系有限的DNA序列,这一结果表明,这种与Dicer相关的基因是程序性DNA重排所必需的。令人惊讶的是,DeltaDCL1细胞在整体H3K9甲基化方面并不缺乏,但这种修饰并未像在野生型细胞中那样在生殖系有限序列上富集,这清楚地表明这些小RNA对于其靶向特定基因座至关重要。

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