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Reb1p 终止通路受阻,限制了隐蔽和通读转录。

Roadblock termination by reb1p restricts cryptic and readthrough transcription.

机构信息

Centre de Génétique Moléculaire, CNRS UPR3404, 91190 Gif sur Yvette, France.

European Molecular Biology Laboratory (EMBL), Genome Biology Unit, 69117 Heidelberg, Germany.

出版信息

Mol Cell. 2014 Dec 4;56(5):667-80. doi: 10.1016/j.molcel.2014.10.026.

Abstract

Widely transcribed compact genomes must cope with the major challenge of frequent overlapping or concurrent transcription events. Efficient and timely transcription termination is crucial to control pervasive transcription and prevent transcriptional interference. In yeast, transcription termination of RNA polymerase II (RNAPII) occurs via two possible pathways that both require recognition of termination signals on nascent RNA by specific factors. We describe here an additional mechanism of transcription termination for RNAPII and demonstrate its biological significance. We show that the transcriptional activator Reb1p bound to DNA is a roadblock for RNAPII, which pauses and is ubiquitinated, thus triggering termination. Reb1p-dependent termination generates a class of cryptic transcripts that are degraded in the nucleus by the exosome. We also observed transcriptional interference between neighboring genes in the absence of Reb1p. This work demonstrates the importance of roadblock termination for controlling pervasive transcription and preventing transcription through gene regulatory regions.

摘要

广泛转录的紧凑基因组必须应对频繁重叠或并发转录事件的主要挑战。有效的转录终止对于控制普遍转录和防止转录干扰至关重要。在酵母中,RNA 聚合酶 II(RNAPII)的转录终止通过两种可能的途径发生,这两种途径都需要特定因子识别新生 RNA 上的终止信号。我们在这里描述了 RNAPII 转录终止的另一种机制,并证明了其生物学意义。我们表明,与 DNA 结合的转录激活因子 Reb1p 是 RNAPII 的障碍,它会暂停并被泛素化,从而触发终止。Reb1p 依赖性终止产生一类隐匿性转录本,这些转录本在核内经 exosome 降解。我们还观察到在没有 Reb1p 的情况下,相邻基因之间存在转录干扰。这项工作证明了障碍终止对于控制普遍转录和防止转录通过基因调控区域的重要性。

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