CRISPR screens in sister chromatid cohesion defective cells reveal PAXIP1-PAGR1 as regulator of chromatin association of cohesin

Author:

van Schie Janne J M12,de Lint Klaas12,Molenaar Thom M12,Moronta Gines Macarena3,Balk Jesper A12,Rooimans Martin A12,Roohollahi Khashayar12,Pai Govind M12,Borghuis Lauri12,Ramadhin Anisha R12,Corazza Francesco3,Dorsman Josephine C12,Wendt Kerstin S3,Wolthuis Rob M F12,de Lange Job12ORCID

Affiliation:

1. Amsterdam UMC location Vrije Universiteit Amsterdam, Department of Human Genetics, Section Oncogenetics , Amsterdam , The Netherlands

2. Cancer Center Amsterdam, Cancer Biology and Immunology , Amsterdam , The Netherlands

3. Erasmus Medical Centre, Department of Cell Biology , Rotterdam , The Netherlands

Abstract

Abstract The cohesin complex regulates higher order chromosome architecture through maintaining sister chromatid cohesion and folding chromatin by DNA loop extrusion. Impaired cohesin function underlies a heterogeneous group of genetic syndromes and is associated with cancer. Here, we mapped the genetic dependencies of human cell lines defective of cohesion regulators DDX11 and ESCO2. The obtained synthetic lethality networks are strongly enriched for genes involved in DNA replication and mitosis and support the existence of parallel sister chromatid cohesion establishment pathways. Among the hits, we identify the chromatin binding, BRCT-domain containing protein PAXIP1 as a novel cohesin regulator. Depletion of PAXIP1 severely aggravates cohesion defects in ESCO2 mutant cells, leading to mitotic cell death. PAXIP1 promotes global chromatin association of cohesin, independent of DNA replication, a function that cannot be explained by indirect effects of PAXIP1 on transcription or DNA repair. Cohesin regulation by PAXIP1 requires its binding partner PAGR1 and a conserved FDF motif in PAGR1. PAXIP1 co-localizes with cohesin on multiple genomic loci, including active gene promoters and enhancers. Possibly, this newly identified role of PAXIP1-PAGR1 in regulating cohesin occupancy on chromatin is also relevant for previously described functions of PAXIP1 in transcription, immune cell maturation and DNA repair.

Funder

Dutch Cancer Society

Publisher

Oxford University Press (OUP)

Subject

Genetics

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