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PRDM9 interactions with other proteins provide a link between recombination hotspots and the chromosomal axis in meiosis
ED. Parvanov, H. Tian, T. Billings, RL. Saxl, C. Spruce, R. Aithal, L. Krejci, K. Paigen, PM. Petkov,
Language English Country United States
Document type Journal Article
NLK
Free Medical Journals
from 1992 to 2 months ago
PubMed Central
from 1992 to 2 months ago
Europe PubMed Central
from 1992 to 2 months ago
Open Access Digital Library
from 1989-11-01
Open Access Digital Library
from 1997-01-01
- MeSH
- Chromatin metabolism MeSH
- Chromosomes genetics physiology MeSH
- DNA metabolism MeSH
- DNA Breaks, Double-Stranded MeSH
- Genome MeSH
- Histone-Lysine N-Methyltransferase genetics metabolism physiology MeSH
- Homologous Recombination MeSH
- Meiosis physiology MeSH
- Mice MeSH
- Protein Domains MeSH
- Recombination, Genetic physiology MeSH
- Spermatocytes metabolism MeSH
- Animals MeSH
- Check Tag
- Male MeSH
- Mice MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
In mammals, meiotic recombination occurs at 1- to 2-kb genomic regions termed hotspots, whose positions and activities are determined by PRDM9, a DNA-binding histone methyltransferase. We show that the KRAB domain of PRDM9 forms complexes with additional proteins to allow hotspots to proceed into the next phase of recombination. By a combination of yeast-two hybrid assay, in vitro binding, and coimmunoprecipitation from mouse spermatocytes, we identified four proteins that directly interact with PRDM9's KRAB domain, namely CXXC1, EWSR1, EHMT2, and CDYL. These proteins are coexpressed in spermatocytes at the early stages of meiotic prophase I, the limited period when PRDM9 is expressed. We also detected association of PRDM9-bound complexes with the meiotic cohesin REC8 and the synaptonemal complex proteins SYCP3 and SYCP1. Our results suggest a model in which PRDM9-bound hotspot DNA is brought to the chromosomal axis by the action of these proteins, ensuring the proper chromatin and spatial environment for subsequent recombination events.
Center for Genome Dynamics Jackson Laboratory Bar Harbor ME 04609
Department of Biology Masaryk University Brno Czech Republic 625
References provided by Crossref.org
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- $a In mammals, meiotic recombination occurs at 1- to 2-kb genomic regions termed hotspots, whose positions and activities are determined by PRDM9, a DNA-binding histone methyltransferase. We show that the KRAB domain of PRDM9 forms complexes with additional proteins to allow hotspots to proceed into the next phase of recombination. By a combination of yeast-two hybrid assay, in vitro binding, and coimmunoprecipitation from mouse spermatocytes, we identified four proteins that directly interact with PRDM9's KRAB domain, namely CXXC1, EWSR1, EHMT2, and CDYL. These proteins are coexpressed in spermatocytes at the early stages of meiotic prophase I, the limited period when PRDM9 is expressed. We also detected association of PRDM9-bound complexes with the meiotic cohesin REC8 and the synaptonemal complex proteins SYCP3 and SYCP1. Our results suggest a model in which PRDM9-bound hotspot DNA is brought to the chromosomal axis by the action of these proteins, ensuring the proper chromatin and spatial environment for subsequent recombination events.
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