Cdk9 and H2Bub1 signal to Clr6-CII/Rpd3S to suppress aberrant antisense transcription

Author:

Sansó Miriam12,Parua Pabitra K1,Pinto Daniel3,Svensson J Peter4ORCID,Pagé Viviane3,Bitton Danny A5,MacKinnon Sarah3,Garcia Patricia6,Hidalgo Elena6ORCID,Bähler Jürg5ORCID,Tanny Jason C3ORCID,Fisher Robert P1ORCID

Affiliation:

1. Department of Oncological Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, USA

2. Cancer Genomics Group, Vall d’Hebron Institute of Oncology, Barcelona, Spain

3. Department of Pharmacology and Therapeutics, McGill University, Montreal, Canada

4. Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden

5. Research Department of Genetics, Evolution & Environment, University College, London, United Kingdom

6. Departament de Ciènces Experimentals i de la Salut, Universitat Pompeu Fabra, Barcelona, Spain

Abstract

AbstractMono-ubiquitylation of histone H2B (H2Bub1) and phosphorylation of elongation factor Spt5 by cyclin-dependent kinase 9 (Cdk9) occur during transcription by RNA polymerase II (RNAPII), and are mutually dependent in fission yeast. It remained unclear whether Cdk9 and H2Bub1 cooperate to regulate the expression of individual genes. Here, we show that Cdk9 inhibition or H2Bub1 loss induces intragenic antisense transcription of ∼10% of fission yeast genes, with each perturbation affecting largely distinct subsets; ablation of both pathways de-represses antisense transcription of over half the genome. H2Bub1 and phospho-Spt5 have similar genome-wide distributions; both modifications are enriched, and directly proportional to each other, in coding regions, and decrease abruptly around the cleavage and polyadenylation signal (CPS). Cdk9-dependence of antisense suppression at specific genes correlates with high H2Bub1 occupancy, and with promoter-proximal RNAPII pausing. Genetic interactions link Cdk9, H2Bub1 and the histone deacetylase Clr6-CII, while combined Cdk9 inhibition and H2Bub1 loss impair Clr6-CII recruitment to chromatin and lead to decreased occupancy and increased acetylation of histones within gene coding regions. These results uncover novel interactions between co-transcriptional histone modification pathways, which link regulation of RNAPII transcription elongation to suppression of aberrant initiation.

Funder

National Institutes of Health

Canadian Institutes of Health Research

Natural Sciences and Engineering Research Council of Canada

Wellcome Trust

Swedish Research Council

Cancerfonden

Fond de recherche Quebec Santé

Publisher

Oxford University Press (OUP)

Subject

Genetics

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