A functional LSD1 coregulator screen reveals a novel transcriptional regulatory cascade connecting R-loop homeostasis with epigenetic regulation

Author:

Pinter Sabine1,Knodel Franziska1,Choudalakis Michel1,Schnee Philipp1,Kroll Carolin1,Fuchs Marina1,Broehm Alexander1,Weirich Sara1,Roth Mareike2,Eisler Stephan A3,Zuber Johannes24,Jeltsch Albert1,Rathert Philipp1ORCID

Affiliation:

1. Department of Biochemistry, Institute of Biochemistry and Technical Biochemistry, University of Stuttgart, 70569 Stuttgart, Germany

2. Research Institute of Molecular Pathology, Vienna BioCenter, Vienna, Austria

3. Stuttgart Research Center Systems Biology (SRCSB), University of Stuttgart, 70569 Stuttgart, Germany

4. Medical University of Vienna, Vienna BioCenter (VBC), Vienna, Austria

Abstract

Abstract The lysine specific demethylase 1 (LSD1) plays a pivotal role in cellular differentiation by regulating the expression of key developmental genes in concert with different coregulatory proteins. This process is impaired in different cancer types and incompletely understood. To comprehensively identify functional coregulators of LSD1, we established a novel tractable fluorescent reporter system to monitor LSD1 activity in living cells. Combining this reporter system with a state-of-the-art multiplexed RNAi screen, we identify the DEAD-box helicase 19A (DDX19A) as a novel coregulator and demonstrate that suppression of Ddx19a results in an increase of R-loops and reduced LSD1-mediated gene silencing. We further show that DDX19A binds to tri-methylated lysine 27 of histone 3 (H3K27me3) and it regulates gene expression through the removal of transcription promoting R-loops. Our results uncover a novel transcriptional regulatory cascade where the downregulation of genes is dependent on the LSD1 mediated demethylation of histone H3 lysine 4 (H3K4). This allows the polycomb repressive complex 2 (PRC2) to methylate H3K27, which serves as a binding site for DDX19A. Finally, the binding of DDX19A leads to the efficient removal of R-loops at active promoters, which further de-represses LSD1 and PRC2, establishing a positive feedback loop leading to a robust repression of the target gene.

Funder

Wilhelm Sander Foundation

Zeiss Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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