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RNA聚合酶I转录布氏锥虫中的前环素基因和可变表面糖蛋白基因表达位点。

RNA polymerase I transcribes procyclin genes and variant surface glycoprotein gene expression sites in Trypanosoma brucei.

作者信息

Günzl Arthur, Bruderer Thomas, Laufer Gabriele, Schimanski Bernd, Tu Lan-Chun, Chung Hui-Min, Lee Pei-Tseng, Lee Mary Gwo-Shu

机构信息

Medizinisch-Naturwissenschaftliches Forschungsinstitut der Universität Tübingen, 72074 Tübingen, Germany.

出版信息

Eukaryot Cell. 2003 Jun;2(3):542-51. doi: 10.1128/EC.2.3.542-551.2003.

Abstract

In eukaryotes, RNA polymerase (pol) I exclusively transcribes the large rRNA gene unit (rDNA) and mRNA is synthesized by RNA pol II. The African trypanosome, Trypanosoma brucei, represents an exception to this rule. In this organism, transcription of genes encoding the variant surface glycoprotein (VSG) and the procyclins is resistant to alpha-amanitin, indicating that it is mediated by RNA pol I, while other protein-coding genes are transcribed by RNA pol II. To obtain firm proof for this concept, we generated a T. brucei cell line which exclusively expresses protein C epitope-tagged RNA pol I. Using an anti-protein C immunoaffinity matrix, we specifically depleted RNA pol I from transcriptionally active cell extracts. The depletion of RNA pol I impaired in vitro transcription initiated at the rDNA promoter, the GPEET procyclin gene promoter, and a VSG gene expression site promoter but did not affect transcription from the spliced leader (SL) RNA gene promoter. Fittingly, induction of RNA interference against the RNA pol I largest subunit in insect-form trypanosomes significantly reduced the relative transcriptional efficiency of rDNA, procyclin genes, and VSG expression sites in vivo whereas that of SL RNA, alphabeta-tubulin, and heat shock protein 70 genes was not affected. Our studies unequivocally show that T. brucei harbors a multifunctional RNA pol I which, in addition to transcribing rDNA, transcribes procyclin genes and VSG gene expression sites.

摘要

在真核生物中,RNA聚合酶(pol)I专门转录大核糖体RNA基因单位(rDNA),而mRNA由RNA pol II合成。非洲锥虫布氏锥虫是这一规律的一个例外。在这种生物体中,编码可变表面糖蛋白(VSG)和前环素的基因转录对α-鹅膏蕈碱具有抗性,这表明它是由RNA pol I介导的,而其他蛋白质编码基因则由RNA pol II转录。为了获得这一概念的确凿证据,我们构建了一个布氏锥虫细胞系,该细胞系专门表达蛋白C表位标签的RNA pol I。使用抗蛋白C免疫亲和基质,我们从转录活性细胞提取物中特异性去除了RNA pol I。RNA pol I的去除损害了在rDNA启动子、GPEET前环素基因启动子和VSG基因表达位点启动子起始的体外转录,但不影响来自剪接前导(SL)RNA基因启动子的转录。相应地,在昆虫型锥虫中诱导针对RNA pol I最大亚基的RNA干扰,显著降低了体内rDNA、前环素基因和VSG表达位点的相对转录效率,而SL RNA、αβ-微管蛋白和热休克蛋白70基因的转录效率不受影响。我们的研究明确表明,布氏锥虫含有一种多功能RNA pol I,除了转录rDNA外,还转录前环素基因和VSG基因表达位点。

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