The Hda1 histone deacetylase limits divergent non-coding transcription and restricts transcription initiation frequency

Hda1组蛋白去乙酰化酶限制了非编码转录的多样性,并限制了转录起始频率。

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作者:Uthra Gowthaman ,Maxim Ivanov ,Isabel Schwarz ,Heta P Patel ,Niels A Müller ,Desiré García-Pichardo ,Tineke L Lenstra ,Sebastian Marquardt

Abstract

Nucleosome-depleted regions (NDRs) at gene promoters support initiation of RNA polymerase II transcription. Interestingly, transcription often initiates in both directions, resulting in an mRNA and a divergent non-coding (DNC) transcript of unclear purpose. Here, we characterized the genetic architecture and molecular mechanism of DNC transcription in budding yeast. Using high-throughput reverse genetic screens based on quantitative single-cell fluorescence measurements, we identified the Hda1 histone deacetylase complex (Hda1C) as a repressor of DNC transcription. Nascent transcription profiling showed a genome-wide role of Hda1C in repression of DNC transcription. Live-cell imaging of transcription revealed that mutations in the Hda3 subunit increased the frequency of DNC transcription. Hda1C contributed to decreased acetylation of histone H3 in DNC transcription regions, supporting DNC transcription repression by histone deacetylation. Our data support the interpretation that DNC transcription results as a consequence of the NDR-based architecture of eukaryotic promoters, but that it is governed by locus-specific repression to maintain genome fidelity. Keywords: RNA polymerase II transcription; divergent non-coding (DNC) transcription; live-cell imaging; non-coding RNA (ncRNA).

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