Nuclear dynamics of the Set1C subunit Spp1 prepares meiotic recombination sites for break formation

Author:

Karányi Zsolt12,Halász László1ORCID,Acquaviva Laurent3ORCID,Jónás Dávid1,Hetey Szabolcs1,Boros-Oláh Beáta1,Peng Feng4,Chen Doris4ORCID,Klein Franz4,Géli Vincent3ORCID,Székvölgyi Lóránt1ORCID

Affiliation:

1. MTA-DE Momentum Genome Architecture and Recombination Research Group, Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Debrecen, Debrecen, Hungary

2. Department of Internal Medicine, University of Debrecen, Debrecen, Hungary

3. Marseille Cancer Research Center (CRCM), U1068 Institut National de la Santé et de la Recherche Médicale, UMR7258 Centre National de la Recherche Scientifique, Aix Marseille University, Institut Paoli-Calmettes, Marseille, France. Equipe labellisée Ligue

4. Max F. Perutz Laboratories, University of Vienna, Vienna, Austria

Abstract

Spp1 is the H3K4me3 reader subunit of the Set1 complex (COMPASS/Set1C) that contributes to the mechanism by which meiotic DNA break sites are mechanistically selected. We previously proposed a model in which Spp1 interacts with H3K4me3 and the chromosome axis protein Mer2 that leads to DSB formation. Here we show that spatial interactions of Spp1 and Mer2 occur independently of Set1C. Spp1 exhibits dynamic chromatin binding features during meiosis, with many de novo appearing and disappearing binding sites. Spp1 chromatin binding dynamics depends on its PHD finger and Mer2-interacting domain and on modifiable histone residues (H3R2/K4). Remarkably, association of Spp1 with Mer2 axial sites reduces the effective turnover rate and diffusion coefficient of Spp1 upon chromatin binding, compared with other Set1C subunits. Our results indicate that “chromosomal turnover rate” is a major molecular determinant of Spp1 function in the framework of meiotic chromatin structure that prepares recombination initiation sites for break formation.

Funder

Hungarian Academy of Sciences

Institut d'Études Avancées

Aix-Marseille University

Ligue Contre le Cancer

Austrian Science Foundation

National Research, Developement, and Innovation Office, Hungary

Publisher

Rockefeller University Press

Subject

Cell Biology

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