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JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions

Histone variants differ in amino acid sequence, expression timing and genomic localization sites from canonical histones and convey unique functions to eukaryotic cells. Their tightly controlled spatial and temporal deposition into specific chromatin regions is accomplished by dedicated chaperone an...

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Autores principales: Procida, Tara, Friedrich, Tobias, Jack, Antonia P. M., Peritore, Martina, Bönisch, Clemens, Eberl, H. Christian, Daus, Nadine, Kletenkov, Konstantin, Nist, Andrea, Stiewe, Thorsten, Borggrefe, Tilman, Mann, Matthias, Bartkuhn, Marek, Hake, Sandra B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826843/
https://www.ncbi.nlm.nih.gov/pubmed/33445503
http://dx.doi.org/10.3390/ijms22020678
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author Procida, Tara
Friedrich, Tobias
Jack, Antonia P. M.
Peritore, Martina
Bönisch, Clemens
Eberl, H. Christian
Daus, Nadine
Kletenkov, Konstantin
Nist, Andrea
Stiewe, Thorsten
Borggrefe, Tilman
Mann, Matthias
Bartkuhn, Marek
Hake, Sandra B.
author_facet Procida, Tara
Friedrich, Tobias
Jack, Antonia P. M.
Peritore, Martina
Bönisch, Clemens
Eberl, H. Christian
Daus, Nadine
Kletenkov, Konstantin
Nist, Andrea
Stiewe, Thorsten
Borggrefe, Tilman
Mann, Matthias
Bartkuhn, Marek
Hake, Sandra B.
author_sort Procida, Tara
collection PubMed
description Histone variants differ in amino acid sequence, expression timing and genomic localization sites from canonical histones and convey unique functions to eukaryotic cells. Their tightly controlled spatial and temporal deposition into specific chromatin regions is accomplished by dedicated chaperone and/or remodeling complexes. While quantitatively identifying the chaperone complexes of many human H2A variants by using mass spectrometry, we also found additional members of the known H2A.Z chaperone complexes p400/TIP60/NuA4 and SRCAP. We discovered JAZF1, a nuclear/nucleolar protein, as a member of a p400 sub-complex containing MBTD1 but excluding ANP32E. Depletion of JAZF1 results in transcriptome changes that affect, among other pathways, ribosome biogenesis. To identify the underlying molecular mechanism contributing to JAZF1’s function in gene regulation, we performed genome-wide ChIP-seq analyses. Interestingly, depletion of JAZF1 leads to reduced H2A.Z acetylation levels at > 1000 regulatory sites without affecting H2A.Z nucleosome positioning. Since JAZF1 associates with the histone acetyltransferase TIP60, whose depletion causes a correlated H2A.Z deacetylation of several JAZF1-targeted enhancer regions, we speculate that JAZF1 acts as chromatin modulator by recruiting TIP60’s enzymatic activity. Altogether, this study uncovers JAZF1 as a member of a TIP60-containing p400 chaperone complex orchestrating H2A.Z acetylation at regulatory regions controlling the expression of genes, many of which are involved in ribosome biogenesis.
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spelling pubmed-78268432021-01-25 JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions Procida, Tara Friedrich, Tobias Jack, Antonia P. M. Peritore, Martina Bönisch, Clemens Eberl, H. Christian Daus, Nadine Kletenkov, Konstantin Nist, Andrea Stiewe, Thorsten Borggrefe, Tilman Mann, Matthias Bartkuhn, Marek Hake, Sandra B. Int J Mol Sci Article Histone variants differ in amino acid sequence, expression timing and genomic localization sites from canonical histones and convey unique functions to eukaryotic cells. Their tightly controlled spatial and temporal deposition into specific chromatin regions is accomplished by dedicated chaperone and/or remodeling complexes. While quantitatively identifying the chaperone complexes of many human H2A variants by using mass spectrometry, we also found additional members of the known H2A.Z chaperone complexes p400/TIP60/NuA4 and SRCAP. We discovered JAZF1, a nuclear/nucleolar protein, as a member of a p400 sub-complex containing MBTD1 but excluding ANP32E. Depletion of JAZF1 results in transcriptome changes that affect, among other pathways, ribosome biogenesis. To identify the underlying molecular mechanism contributing to JAZF1’s function in gene regulation, we performed genome-wide ChIP-seq analyses. Interestingly, depletion of JAZF1 leads to reduced H2A.Z acetylation levels at > 1000 regulatory sites without affecting H2A.Z nucleosome positioning. Since JAZF1 associates with the histone acetyltransferase TIP60, whose depletion causes a correlated H2A.Z deacetylation of several JAZF1-targeted enhancer regions, we speculate that JAZF1 acts as chromatin modulator by recruiting TIP60’s enzymatic activity. Altogether, this study uncovers JAZF1 as a member of a TIP60-containing p400 chaperone complex orchestrating H2A.Z acetylation at regulatory regions controlling the expression of genes, many of which are involved in ribosome biogenesis. MDPI 2021-01-12 /pmc/articles/PMC7826843/ /pubmed/33445503 http://dx.doi.org/10.3390/ijms22020678 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Procida, Tara
Friedrich, Tobias
Jack, Antonia P. M.
Peritore, Martina
Bönisch, Clemens
Eberl, H. Christian
Daus, Nadine
Kletenkov, Konstantin
Nist, Andrea
Stiewe, Thorsten
Borggrefe, Tilman
Mann, Matthias
Bartkuhn, Marek
Hake, Sandra B.
JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title_full JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title_fullStr JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title_full_unstemmed JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title_short JAZF1, A Novel p400/TIP60/NuA4 Complex Member, Regulates H2A.Z Acetylation at Regulatory Regions
title_sort jazf1, a novel p400/tip60/nua4 complex member, regulates h2a.z acetylation at regulatory regions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7826843/
https://www.ncbi.nlm.nih.gov/pubmed/33445503
http://dx.doi.org/10.3390/ijms22020678
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