ISW1a modulates cohesin distribution in centromeric and pericentromeric regions

Author:

Litwin Ireneusz1ORCID,Nowicka Małgorzata2,Markowska Katarzyna1,Maciaszczyk-Dziubińska Ewa2,Tomaszewska Paulina23,Wysocki Robert2ORCID,Kramarz Karol1

Affiliation:

1. Academic Excellence Hub - Research Centre for DNA Repair and Replication, Faculty of Biological Sciences, University of Wroclaw , 50-328 Wroclaw, Poland

2. Department of Genetics and Cell Physiology, Faculty of Biological Sciences, University of Wroclaw , 50-328 Wroclaw, Poland

3. Department of Genetics and Genome Biology, University of Leicester , Leicester LE1 7RH, UK

Abstract

Abstract Cohesin is a highly conserved, multiprotein complex whose canonical function is to hold sister chromatids together to ensure accurate chromosome segregation. Cohesin association with chromatin relies on the Scc2-Scc4 cohesin loading complex that enables cohesin ring opening and topological entrapment of sister DNAs. To better understand how sister chromatid cohesion is regulated, we performed a proteomic screen in budding yeast that identified the Isw1 chromatin remodeler as a cohesin binding partner. In addition, we found that Isw1 also interacts with Scc2-Scc4. Lack of Isw1 protein, the Ioc3 subunit of ISW1a or Isw1 chromatin remodeling activity resulted in increased accumulation of cohesin at centromeres and pericentromeres, suggesting that ISW1a may promote efficient translocation of cohesin from the centromeric site of loading to neighboring regions. Consistent with the role of ISW1a in the chromatin organization of centromeric regions, Isw1 was found to be recruited to centromeres. In its absence we observed changes in the nucleosomal landscape at centromeres and pericentromeres. Finally, we discovered that upon loss of RSC functionality, ISW1a activity leads to reduced cohesin binding and cohesion defect. Taken together, our results support the notion of a key role of chromatin remodelers in the regulation of cohesin distribution on chromosomes.

Funder

National Science Centre

University of Wrocław

Centre for Preclinical Research and Technology

European Regional Development Fund

National Cohesion Strategy of Poland

Excellence Initiative-Research University

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference141 articles.

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