Cargando…

The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes

Histone H3K4 methylation is a feature of meiotic recombination hotspots shared by many organisms including plants and mammals. Meiotic recombination is initiated by programmed double-strand break (DSB) formation that in budding yeast takes place in gene promoters and is promoted by histone H3K4 di/t...

Descripción completa

Detalles Bibliográficos
Autores principales: Adam, Céline, Guérois, Raphaël, Citarella, Anna, Verardi, Laura, Adolphe, Florine, Béneut, Claire, Sommermeyer, Vérane, Ramus, Claire, Govin, Jérôme, Couté, Yohann, Borde, Valérie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5828529/
https://www.ncbi.nlm.nih.gov/pubmed/29444071
http://dx.doi.org/10.1371/journal.pgen.1007223
_version_ 1783302661285609472
author Adam, Céline
Guérois, Raphaël
Citarella, Anna
Verardi, Laura
Adolphe, Florine
Béneut, Claire
Sommermeyer, Vérane
Ramus, Claire
Govin, Jérôme
Couté, Yohann
Borde, Valérie
author_facet Adam, Céline
Guérois, Raphaël
Citarella, Anna
Verardi, Laura
Adolphe, Florine
Béneut, Claire
Sommermeyer, Vérane
Ramus, Claire
Govin, Jérôme
Couté, Yohann
Borde, Valérie
author_sort Adam, Céline
collection PubMed
description Histone H3K4 methylation is a feature of meiotic recombination hotspots shared by many organisms including plants and mammals. Meiotic recombination is initiated by programmed double-strand break (DSB) formation that in budding yeast takes place in gene promoters and is promoted by histone H3K4 di/trimethylation. This histone modification is recognized by Spp1, a PHD finger containing protein that belongs to the conserved histone H3K4 methyltransferase Set1 complex. During meiosis, Spp1 binds H3K4me3 and interacts with a DSB protein, Mer2, to promote DSB formation close to gene promoters. How Set1 complex- and Mer2- related functions of Spp1 are connected is not clear. Here, combining genome-wide localization analyses, biochemical approaches and the use of separation of function mutants, we show that Spp1 is present within two distinct complexes in meiotic cells, the Set1 and the Mer2 complexes. Disrupting the Spp1-Set1 interaction mildly decreases H3K4me3 levels and does not affect meiotic recombination initiation. Conversely, the Spp1-Mer2 interaction is required for normal meiotic recombination initiation, but dispensable for Set1 complex-mediated histone H3K4 methylation. Finally, we provide evidence that Spp1 preserves normal H3K4me3 levels independently of the Set1 complex. We propose a model where Spp1 works in three ways to promote recombination initiation: first by depositing histone H3K4 methylation (Set1 complex), next by “reading” and protecting histone H3K4 methylation, and finally by making the link with the chromosome axis (Mer2-Spp1 complex). This work deciphers the precise roles of Spp1 in meiotic recombination and opens perspectives to study its functions in other organisms where H3K4me3 is also present at recombination hotspots.
format Online
Article
Text
id pubmed-5828529
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-58285292018-03-15 The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes Adam, Céline Guérois, Raphaël Citarella, Anna Verardi, Laura Adolphe, Florine Béneut, Claire Sommermeyer, Vérane Ramus, Claire Govin, Jérôme Couté, Yohann Borde, Valérie PLoS Genet Research Article Histone H3K4 methylation is a feature of meiotic recombination hotspots shared by many organisms including plants and mammals. Meiotic recombination is initiated by programmed double-strand break (DSB) formation that in budding yeast takes place in gene promoters and is promoted by histone H3K4 di/trimethylation. This histone modification is recognized by Spp1, a PHD finger containing protein that belongs to the conserved histone H3K4 methyltransferase Set1 complex. During meiosis, Spp1 binds H3K4me3 and interacts with a DSB protein, Mer2, to promote DSB formation close to gene promoters. How Set1 complex- and Mer2- related functions of Spp1 are connected is not clear. Here, combining genome-wide localization analyses, biochemical approaches and the use of separation of function mutants, we show that Spp1 is present within two distinct complexes in meiotic cells, the Set1 and the Mer2 complexes. Disrupting the Spp1-Set1 interaction mildly decreases H3K4me3 levels and does not affect meiotic recombination initiation. Conversely, the Spp1-Mer2 interaction is required for normal meiotic recombination initiation, but dispensable for Set1 complex-mediated histone H3K4 methylation. Finally, we provide evidence that Spp1 preserves normal H3K4me3 levels independently of the Set1 complex. We propose a model where Spp1 works in three ways to promote recombination initiation: first by depositing histone H3K4 methylation (Set1 complex), next by “reading” and protecting histone H3K4 methylation, and finally by making the link with the chromosome axis (Mer2-Spp1 complex). This work deciphers the precise roles of Spp1 in meiotic recombination and opens perspectives to study its functions in other organisms where H3K4me3 is also present at recombination hotspots. Public Library of Science 2018-02-14 /pmc/articles/PMC5828529/ /pubmed/29444071 http://dx.doi.org/10.1371/journal.pgen.1007223 Text en © 2018 Adam et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Adam, Céline
Guérois, Raphaël
Citarella, Anna
Verardi, Laura
Adolphe, Florine
Béneut, Claire
Sommermeyer, Vérane
Ramus, Claire
Govin, Jérôme
Couté, Yohann
Borde, Valérie
The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title_full The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title_fullStr The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title_full_unstemmed The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title_short The PHD finger protein Spp1 has distinct functions in the Set1 and the meiotic DSB formation complexes
title_sort phd finger protein spp1 has distinct functions in the set1 and the meiotic dsb formation complexes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5828529/
https://www.ncbi.nlm.nih.gov/pubmed/29444071
http://dx.doi.org/10.1371/journal.pgen.1007223
work_keys_str_mv AT adamceline thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT gueroisraphael thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT citarellaanna thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT verardilaura thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT adolpheflorine thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT beneutclaire thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT sommermeyerverane thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT ramusclaire thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT govinjerome thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT couteyohann thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT bordevalerie thephdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT adamceline phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT gueroisraphael phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT citarellaanna phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT verardilaura phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT adolpheflorine phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT beneutclaire phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT sommermeyerverane phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT ramusclaire phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT govinjerome phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT couteyohann phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes
AT bordevalerie phdfingerproteinspp1hasdistinctfunctionsintheset1andthemeioticdsbformationcomplexes