The histone H3/H4 chaperone CHAF1B prevents the mislocalization of CENP-A for chromosomal stability

Author:

Shrestha Roshan L.1ORCID,Balachandra Vinutha1,Kim Jee Hun1,Rossi Austin1,Vadlamani Pranathi2ORCID,Sethi Subhash Chandra1,Ozbun Laurent3ORCID,Lin Shinjen4,Cheng Ken Chin-Chien4,Chari Raj5,Karpova Tatiana S.6,Pegoraro Gianluca3ORCID,Foltz Daniel R.2ORCID,Caplen Natasha J.7ORCID,Basrai Munira A.1ORCID

Affiliation:

1. Genetics Branch, Center for Cancer Research (CCR), National Cancer Institute (NCI), National Institutes of Health (NIH) 1 Yeast Genome Stability Section , , Bethesda, MD 20892 , USA

2. Northwestern University 2 Department of Biochemistry and Molecular Genetics , , Chicago, IL 60611 , USA

3. CCR, NCI, NIH 3 High-Throughput Imaging Facility (HiTIF), Laboratory of Receptor Biology and Gene Expression , , Bethesda, MD 20892 , USA

4. National Center for Advancing Translational Sciences, NIH 4 Functional Genomics Facility , , Bethesda, MD 20892 , USA

5. Laboratory Animal Sciences Program, Frederick National Laboratory for Cancer Research 5 Genome Modification Core , , Frederick, MD 21701 , USA

6. CCR, NCI, NIH 6 Optical Microscopy Core, Laboratory of Receptor Biology and Gene Expression , , Bethesda, MD 20892 , USA

7. CCR, NCI, NIH 7 Functional Genetics Section, Genetics Branch , , Bethesda, MD 20892 , USA

Abstract

ABSTRACT Restricting the localization of the evolutionarily conserved centromeric histone H3 variant CENP-A to centromeres prevents chromosomal instability (CIN). The mislocalization of CENP-A to non-centromeric regions contributes to CIN in yeasts, flies and human cells. Even though overexpression and mislocalization of CENP-A have been reported in cancers, the mechanisms responsible for its mislocalization remain poorly understood. Here, we used an imaging-based high-throughput RNAi screen to identify factors that prevent mislocalization of overexpressed YFP-tagged CENP-A (YFP–CENP-A) in HeLa cells. Among the top five candidates in the screen – the depletion of which showed increased nuclear YFP–CENP-A fluorescence – were the histone chaperones CHAF1B (or p60) and CHAF1A (or p150). Follow-up validation and characterization experiments showed that CHAF1B-depleted cells exhibited CENP-A mislocalization, CIN phenotypes and increased enrichment of CENP-A in chromatin fractions. The depletion of DAXX, a histone H3.3 chaperone, suppressed CENP-A mislocalization and CIN in CHAF1B-depleted cells. We propose that in CHAF1B-depleted cells, DAXX promotes mislocalization of the overexpressed CENP-A to non-centromeric regions, resulting in CIN. In summary, we identified regulators of CENP-A localization and defined a role for CHAF1B in preventing DAXX-dependent CENP-A mislocalization and CIN.

Funder

National Cancer Institute

National Institutes of Health

Publisher

The Company of Biologists

Subject

Cell Biology

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