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RNA 聚合酶 III 介导的 B1-Alu 转录复合物的特定终止子循环由 RNA 末端结合蛋白 La 介导。

Terminator-specific recycling of a B1-Alu transcription complex by RNA polymerase III is mediated by the RNA terminus-binding protein La.

作者信息

Goodier J L, Maraia R J

机构信息

Laboratory of Molecular Growth Regulation, NICHD, National Institutes of Health, Bethesda, Maryland 20892-2753, USA.

出版信息

J Biol Chem. 1998 Oct 2;273(40):26110-6. doi: 10.1074/jbc.273.40.26110.

Abstract

Efficient synthesis of many small abundant RNAs is achieved by the proficient recycling of RNA polymerase (pol) III and stable transcription complexes. Cellular Alu and related retroposons represent unusual pol III genes that are normally repressed but are activated by viral infection and other conditions. The core sequences of these elements contain pol III promoters but must rely on fortuitous downstream oligo(dT) tracts for terminator function. We show that a B1-Alu gene differs markedly from a classical pol III gene (tRNAiMet) in terminator sequence requirements. B1-Alu genes that differ only in terminator sequence context direct differential RNA 3' end formation. These genes are assembled into stable transcription complexes but differ in their ability to be recycled in the presence of the La transcription termination factor. La binds to the nascent RNA 3' UUUOH end motif that is generated by transcriptional termination within the pol III termination signal, oligo(dT). We found that the recycling efficiency of the B1-Alu genes is correlated with the ability of La to access the 3' end of the nascent transcript and protect it from 3'-5' exonucleolytic processing. These results illuminate a relationship between RNA 3' end formation and transcription termination, and La-mediated reinitiation by pol III.

摘要

通过RNA聚合酶(pol)III的高效循环利用和稳定的转录复合物实现了许多小的丰富RNA的高效合成。细胞中的Alu元件及相关逆转座子代表了不同寻常的pol III基因,这些基因通常受到抑制,但在病毒感染和其他条件下会被激活。这些元件的核心序列包含pol III启动子,但必须依赖偶然出现的下游寡聚(dT)序列来实现终止子功能。我们发现,B1-Alu基因在终止子序列要求方面与经典的pol III基因(tRNAiMet)明显不同。仅在终止子序列背景上存在差异的B1-Alu基因指导不同的RNA 3'末端形成。这些基因组装成稳定的转录复合物,但在La转录终止因子存在的情况下它们的循环利用能力有所不同。La与在pol III终止信号寡聚(dT)内转录终止产生的新生RNA 3' UUUOH末端基序结合。我们发现,B1-Alu基因的循环利用效率与La接近新生转录本3'末端并保护其免受3'-5'核酸外切酶加工的能力相关。这些结果揭示了RNA 3'末端形成与转录终止以及La介导的pol III重新起始之间的关系。

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