Cargando…

Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters

PRDM9 directs human meiotic crossover hotspots to intergenic sequence motifs, whereas budding yeast hotspots overlap low nucleosome density regions in gene promoters. To investigate hotspots in plants, which lack PRDM9, we used coalescent analysis of Arabidopsis genetic variation. Crossovers increas...

Descripción completa

Detalles Bibliográficos
Autores principales: Choi, Kyuha, Zhao, Xiaohui, Kelly, Krystyna A., Venn, Oliver, Higgins, James D., Yelina, Nataliya E., Hardcastle, Thomas J., Ziolkowski, Piotr A., Copenhaver, Gregory P., Franklin, F. Chris H., McVean, Gil, Henderson, Ian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3812125/
https://www.ncbi.nlm.nih.gov/pubmed/24056716
http://dx.doi.org/10.1038/ng.2766
_version_ 1782288935712456704
author Choi, Kyuha
Zhao, Xiaohui
Kelly, Krystyna A.
Venn, Oliver
Higgins, James D.
Yelina, Nataliya E.
Hardcastle, Thomas J.
Ziolkowski, Piotr A.
Copenhaver, Gregory P.
Franklin, F. Chris H.
McVean, Gil
Henderson, Ian R.
author_facet Choi, Kyuha
Zhao, Xiaohui
Kelly, Krystyna A.
Venn, Oliver
Higgins, James D.
Yelina, Nataliya E.
Hardcastle, Thomas J.
Ziolkowski, Piotr A.
Copenhaver, Gregory P.
Franklin, F. Chris H.
McVean, Gil
Henderson, Ian R.
author_sort Choi, Kyuha
collection PubMed
description PRDM9 directs human meiotic crossover hotspots to intergenic sequence motifs, whereas budding yeast hotspots overlap low nucleosome density regions in gene promoters. To investigate hotspots in plants, which lack PRDM9, we used coalescent analysis of Arabidopsis genetic variation. Crossovers increase towards gene promoters and terminators, and hotspots are associated with active chromatin modifications, including H2A.Z, histone H3K4(me3), low nucleosome density and low DNA methylation. Hotspot-enriched A-rich and CTT-repeat DNA motifs occur upstream and downstream of transcriptional start respectively. Crossovers are asymmetric around promoters and highest over CTT-motifs and H2A.Z-nucleosomes. Pollen-typing, segregation and cytogenetic analysis show decreased crossovers in the arp6 H2A.Z deposition mutant, at multiple scales. During meiosis H2A.Z and DMC1/RAD51 recombinases form overlapping chromosomal foci. As arp6 reduces DMC1/RAD51 foci, H2A.Z may promote formation or processing of meiotic DNA double-strand breaks. We propose that gene chromatin ancestrally designates hotspots within eukaryotes and PRDM9 is a derived state within vertebrates.
format Online
Article
Text
id pubmed-3812125
institution National Center for Biotechnology Information
language English
publishDate 2013
record_format MEDLINE/PubMed
spelling pubmed-38121252014-05-01 Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters Choi, Kyuha Zhao, Xiaohui Kelly, Krystyna A. Venn, Oliver Higgins, James D. Yelina, Nataliya E. Hardcastle, Thomas J. Ziolkowski, Piotr A. Copenhaver, Gregory P. Franklin, F. Chris H. McVean, Gil Henderson, Ian R. Nat Genet Article PRDM9 directs human meiotic crossover hotspots to intergenic sequence motifs, whereas budding yeast hotspots overlap low nucleosome density regions in gene promoters. To investigate hotspots in plants, which lack PRDM9, we used coalescent analysis of Arabidopsis genetic variation. Crossovers increase towards gene promoters and terminators, and hotspots are associated with active chromatin modifications, including H2A.Z, histone H3K4(me3), low nucleosome density and low DNA methylation. Hotspot-enriched A-rich and CTT-repeat DNA motifs occur upstream and downstream of transcriptional start respectively. Crossovers are asymmetric around promoters and highest over CTT-motifs and H2A.Z-nucleosomes. Pollen-typing, segregation and cytogenetic analysis show decreased crossovers in the arp6 H2A.Z deposition mutant, at multiple scales. During meiosis H2A.Z and DMC1/RAD51 recombinases form overlapping chromosomal foci. As arp6 reduces DMC1/RAD51 foci, H2A.Z may promote formation or processing of meiotic DNA double-strand breaks. We propose that gene chromatin ancestrally designates hotspots within eukaryotes and PRDM9 is a derived state within vertebrates. 2013-09-22 2013-11 /pmc/articles/PMC3812125/ /pubmed/24056716 http://dx.doi.org/10.1038/ng.2766 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Choi, Kyuha
Zhao, Xiaohui
Kelly, Krystyna A.
Venn, Oliver
Higgins, James D.
Yelina, Nataliya E.
Hardcastle, Thomas J.
Ziolkowski, Piotr A.
Copenhaver, Gregory P.
Franklin, F. Chris H.
McVean, Gil
Henderson, Ian R.
Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title_full Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title_fullStr Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title_full_unstemmed Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title_short Arabidopsis meiotic crossover hotspots overlap with H2A.Z nucleosomes at gene promoters
title_sort arabidopsis meiotic crossover hotspots overlap with h2a.z nucleosomes at gene promoters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3812125/
https://www.ncbi.nlm.nih.gov/pubmed/24056716
http://dx.doi.org/10.1038/ng.2766
work_keys_str_mv AT choikyuha arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT zhaoxiaohui arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT kellykrystynaa arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT vennoliver arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT higginsjamesd arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT yelinanataliyae arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT hardcastlethomasj arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT ziolkowskipiotra arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT copenhavergregoryp arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT franklinfchrish arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT mcveangil arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters
AT hendersonianr arabidopsismeioticcrossoverhotspotsoverlapwithh2aznucleosomesatgenepromoters