Cargando…

Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis

Whether gene repositioning to the nuclear periphery during differentiation adds another layer of regulation to gene expression remains controversial. Here, we resolve this by manipulating gene positions through targeting the nuclear envelope transmembrane proteins (NETs) that direct their normal rep...

Descripción completa

Detalles Bibliográficos
Autores principales: Robson, Michael I., de las Heras, Jose I., Czapiewski, Rafal, Lê Thành, Phú, Booth, Daniel G., Kelly, David A., Webb, Shaun, Kerr, Alastair R.W., Schirmer, Eric C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914829/
https://www.ncbi.nlm.nih.gov/pubmed/27264872
http://dx.doi.org/10.1016/j.molcel.2016.04.035
_version_ 1782438598847496192
author Robson, Michael I.
de las Heras, Jose I.
Czapiewski, Rafal
Lê Thành, Phú
Booth, Daniel G.
Kelly, David A.
Webb, Shaun
Kerr, Alastair R.W.
Schirmer, Eric C.
author_facet Robson, Michael I.
de las Heras, Jose I.
Czapiewski, Rafal
Lê Thành, Phú
Booth, Daniel G.
Kelly, David A.
Webb, Shaun
Kerr, Alastair R.W.
Schirmer, Eric C.
author_sort Robson, Michael I.
collection PubMed
description Whether gene repositioning to the nuclear periphery during differentiation adds another layer of regulation to gene expression remains controversial. Here, we resolve this by manipulating gene positions through targeting the nuclear envelope transmembrane proteins (NETs) that direct their normal repositioning during myogenesis. Combining transcriptomics with high-resolution DamID mapping of nuclear envelope-genome contacts, we show that three muscle-specific NETs, NET39, Tmem38A, and WFS1, direct specific myogenic genes to the nuclear periphery to facilitate their repression. Retargeting a NET39 fragment to nucleoli correspondingly repositioned a target gene, indicating a direct tethering mechanism. Being able to manipulate gene position independently of other changes in differentiation revealed that repositioning contributes ⅓ to ⅔ of a gene’s normal repression in myogenesis. Together, these NETs affect 37% of all genes changing expression during myogenesis, and their combined knockdown almost completely blocks myotube formation. This unequivocally demonstrates that NET-directed gene repositioning is critical for developmental gene regulation.
format Online
Article
Text
id pubmed-4914829
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-49148292016-06-29 Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis Robson, Michael I. de las Heras, Jose I. Czapiewski, Rafal Lê Thành, Phú Booth, Daniel G. Kelly, David A. Webb, Shaun Kerr, Alastair R.W. Schirmer, Eric C. Mol Cell Article Whether gene repositioning to the nuclear periphery during differentiation adds another layer of regulation to gene expression remains controversial. Here, we resolve this by manipulating gene positions through targeting the nuclear envelope transmembrane proteins (NETs) that direct their normal repositioning during myogenesis. Combining transcriptomics with high-resolution DamID mapping of nuclear envelope-genome contacts, we show that three muscle-specific NETs, NET39, Tmem38A, and WFS1, direct specific myogenic genes to the nuclear periphery to facilitate their repression. Retargeting a NET39 fragment to nucleoli correspondingly repositioned a target gene, indicating a direct tethering mechanism. Being able to manipulate gene position independently of other changes in differentiation revealed that repositioning contributes ⅓ to ⅔ of a gene’s normal repression in myogenesis. Together, these NETs affect 37% of all genes changing expression during myogenesis, and their combined knockdown almost completely blocks myotube formation. This unequivocally demonstrates that NET-directed gene repositioning is critical for developmental gene regulation. Cell Press 2016-06-16 /pmc/articles/PMC4914829/ /pubmed/27264872 http://dx.doi.org/10.1016/j.molcel.2016.04.035 Text en © 2016 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Robson, Michael I.
de las Heras, Jose I.
Czapiewski, Rafal
Lê Thành, Phú
Booth, Daniel G.
Kelly, David A.
Webb, Shaun
Kerr, Alastair R.W.
Schirmer, Eric C.
Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title_full Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title_fullStr Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title_full_unstemmed Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title_short Tissue-Specific Gene Repositioning by Muscle Nuclear Membrane Proteins Enhances Repression of Critical Developmental Genes during Myogenesis
title_sort tissue-specific gene repositioning by muscle nuclear membrane proteins enhances repression of critical developmental genes during myogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4914829/
https://www.ncbi.nlm.nih.gov/pubmed/27264872
http://dx.doi.org/10.1016/j.molcel.2016.04.035
work_keys_str_mv AT robsonmichaeli tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT delasherasjosei tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT czapiewskirafal tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT lethanhphu tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT boothdanielg tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT kellydavida tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT webbshaun tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT kerralastairrw tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis
AT schirmerericc tissuespecificgenerepositioningbymusclenuclearmembraneproteinsenhancesrepressionofcriticaldevelopmentalgenesduringmyogenesis