Cargando…

TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation

How repetitive elements, epigenetic modifications, and architectural proteins interact ensuring proper genome expression remains poorly understood. Here, we report regulatory mechanisms unveiling a central role of Alu elements (AEs) and RNA polymerase III transcription factor C (TFIIIC) in structura...

Descripción completa

Detalles Bibliográficos
Autores principales: Ferrari, Roberto, de Llobet Cucalon, Lara Isabel, Di Vona, Chiara, Le Dilly, François, Vidal, Enrique, Lioutas, Antonios, Oliete, Javier Quilez, Jochem, Laura, Cutts, Erin, Dieci, Giorgio, Vannini, Alessandro, Teichmann, Martin, de la Luna, Susana, Beato, Miguel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7014570/
https://www.ncbi.nlm.nih.gov/pubmed/31759822
http://dx.doi.org/10.1016/j.molcel.2019.10.020
_version_ 1783496659975536640
author Ferrari, Roberto
de Llobet Cucalon, Lara Isabel
Di Vona, Chiara
Le Dilly, François
Vidal, Enrique
Lioutas, Antonios
Oliete, Javier Quilez
Jochem, Laura
Cutts, Erin
Dieci, Giorgio
Vannini, Alessandro
Teichmann, Martin
de la Luna, Susana
Beato, Miguel
author_facet Ferrari, Roberto
de Llobet Cucalon, Lara Isabel
Di Vona, Chiara
Le Dilly, François
Vidal, Enrique
Lioutas, Antonios
Oliete, Javier Quilez
Jochem, Laura
Cutts, Erin
Dieci, Giorgio
Vannini, Alessandro
Teichmann, Martin
de la Luna, Susana
Beato, Miguel
author_sort Ferrari, Roberto
collection PubMed
description How repetitive elements, epigenetic modifications, and architectural proteins interact ensuring proper genome expression remains poorly understood. Here, we report regulatory mechanisms unveiling a central role of Alu elements (AEs) and RNA polymerase III transcription factor C (TFIIIC) in structurally and functionally modulating the genome via chromatin looping and histone acetylation. Upon serum deprivation, a subset of AEs pre-marked by the activity-dependent neuroprotector homeobox Protein (ADNP) and located near cell-cycle genes recruits TFIIIC, which alters their chromatin accessibility by direct acetylation of histone H3 lysine-18 (H3K18). This facilitates the contacts of AEs with distant CTCF sites near promoter of other cell-cycle genes, which also become hyperacetylated at H3K18. These changes ensure basal transcription of cell-cycle genes and are critical for their re-activation upon serum re-exposure. Our study reveals how direct manipulation of the epigenetic state of AEs by a general transcription factor regulates 3D genome folding and expression.
format Online
Article
Text
id pubmed-7014570
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-70145702020-02-19 TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation Ferrari, Roberto de Llobet Cucalon, Lara Isabel Di Vona, Chiara Le Dilly, François Vidal, Enrique Lioutas, Antonios Oliete, Javier Quilez Jochem, Laura Cutts, Erin Dieci, Giorgio Vannini, Alessandro Teichmann, Martin de la Luna, Susana Beato, Miguel Mol Cell Article How repetitive elements, epigenetic modifications, and architectural proteins interact ensuring proper genome expression remains poorly understood. Here, we report regulatory mechanisms unveiling a central role of Alu elements (AEs) and RNA polymerase III transcription factor C (TFIIIC) in structurally and functionally modulating the genome via chromatin looping and histone acetylation. Upon serum deprivation, a subset of AEs pre-marked by the activity-dependent neuroprotector homeobox Protein (ADNP) and located near cell-cycle genes recruits TFIIIC, which alters their chromatin accessibility by direct acetylation of histone H3 lysine-18 (H3K18). This facilitates the contacts of AEs with distant CTCF sites near promoter of other cell-cycle genes, which also become hyperacetylated at H3K18. These changes ensure basal transcription of cell-cycle genes and are critical for their re-activation upon serum re-exposure. Our study reveals how direct manipulation of the epigenetic state of AEs by a general transcription factor regulates 3D genome folding and expression. Cell Press 2020-02-06 /pmc/articles/PMC7014570/ /pubmed/31759822 http://dx.doi.org/10.1016/j.molcel.2019.10.020 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Ferrari, Roberto
de Llobet Cucalon, Lara Isabel
Di Vona, Chiara
Le Dilly, François
Vidal, Enrique
Lioutas, Antonios
Oliete, Javier Quilez
Jochem, Laura
Cutts, Erin
Dieci, Giorgio
Vannini, Alessandro
Teichmann, Martin
de la Luna, Susana
Beato, Miguel
TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title_full TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title_fullStr TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title_full_unstemmed TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title_short TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation
title_sort tfiiic binding to alu elements controls gene expression via chromatin looping and histone acetylation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7014570/
https://www.ncbi.nlm.nih.gov/pubmed/31759822
http://dx.doi.org/10.1016/j.molcel.2019.10.020
work_keys_str_mv AT ferrariroberto tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT dellobetcucalonlaraisabel tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT divonachiara tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT ledillyfrancois tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT vidalenrique tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT lioutasantonios tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT olietejavierquilez tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT jochemlaura tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT cuttserin tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT diecigiorgio tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT vanninialessandro tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT teichmannmartin tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT delalunasusana tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation
AT beatomiguel tfiiicbindingtoaluelementscontrolsgeneexpressionviachromatinloopingandhistoneacetylation