Cargando…

Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation

Chromosomes are organized into 3D structures that are important for the regulation of gene expression and differentiation. Important role in formation of inter-chromosome contacts play rDNA clusters that make up nucleoli. In the course of differentiation, heterochromatization of rDNA units in mouse...

Descripción completa

Detalles Bibliográficos
Autores principales: Tchurikov, Nickolai A., Klushevskaya, Elena S., Fedoseeva, Daria M., Alembekov, Ildar R., Kravatskaya, Galina I., Chechetkin, Vladimir R., Kravatsky, Yuri V., Kretova, Olga V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761670/
https://www.ncbi.nlm.nih.gov/pubmed/33287227
http://dx.doi.org/10.3390/cells9122587
_version_ 1783627622745374720
author Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Fedoseeva, Daria M.
Alembekov, Ildar R.
Kravatskaya, Galina I.
Chechetkin, Vladimir R.
Kravatsky, Yuri V.
Kretova, Olga V.
author_facet Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Fedoseeva, Daria M.
Alembekov, Ildar R.
Kravatskaya, Galina I.
Chechetkin, Vladimir R.
Kravatsky, Yuri V.
Kretova, Olga V.
author_sort Tchurikov, Nickolai A.
collection PubMed
description Chromosomes are organized into 3D structures that are important for the regulation of gene expression and differentiation. Important role in formation of inter-chromosome contacts play rDNA clusters that make up nucleoli. In the course of differentiation, heterochromatization of rDNA units in mouse cells is coupled with the repression or activation of different genes. Furthermore, the nucleoli of human cells shape the direct contacts with genes that are involved in differentiation and cancer. Here, we identified and categorized the genes located in the regions where rDNA clusters make frequent contacts. Using a 4C approach, we demonstrate that in Drosophila S2 cells, rDNA clusters form contacts with genes that are involved in chromosome organization and differentiation. Heat shock treatment induces changes in the contacts between nucleoli and hundreds of genes controlling morphogenesis. We show that nucleoli form contacts with regions that are enriched with active or repressive histone marks and where small non-coding RNAs are mapped. These data indicate that rDNA contacts are involved in the repression and activation of gene expression and that rDNA clusters orchestrate large groups of Drosophila genes involved in differentiation.
format Online
Article
Text
id pubmed-7761670
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-77616702020-12-26 Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation Tchurikov, Nickolai A. Klushevskaya, Elena S. Fedoseeva, Daria M. Alembekov, Ildar R. Kravatskaya, Galina I. Chechetkin, Vladimir R. Kravatsky, Yuri V. Kretova, Olga V. Cells Article Chromosomes are organized into 3D structures that are important for the regulation of gene expression and differentiation. Important role in formation of inter-chromosome contacts play rDNA clusters that make up nucleoli. In the course of differentiation, heterochromatization of rDNA units in mouse cells is coupled with the repression or activation of different genes. Furthermore, the nucleoli of human cells shape the direct contacts with genes that are involved in differentiation and cancer. Here, we identified and categorized the genes located in the regions where rDNA clusters make frequent contacts. Using a 4C approach, we demonstrate that in Drosophila S2 cells, rDNA clusters form contacts with genes that are involved in chromosome organization and differentiation. Heat shock treatment induces changes in the contacts between nucleoli and hundreds of genes controlling morphogenesis. We show that nucleoli form contacts with regions that are enriched with active or repressive histone marks and where small non-coding RNAs are mapped. These data indicate that rDNA contacts are involved in the repression and activation of gene expression and that rDNA clusters orchestrate large groups of Drosophila genes involved in differentiation. MDPI 2020-12-03 /pmc/articles/PMC7761670/ /pubmed/33287227 http://dx.doi.org/10.3390/cells9122587 Text en © 2020 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
Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Fedoseeva, Daria M.
Alembekov, Ildar R.
Kravatskaya, Galina I.
Chechetkin, Vladimir R.
Kravatsky, Yuri V.
Kretova, Olga V.
Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title_full Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title_fullStr Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title_full_unstemmed Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title_short Dynamics of Whole-Genome Contacts of Nucleoli in Drosophila Cells Suggests a Role for rDNA Genes in Global Epigenetic Regulation
title_sort dynamics of whole-genome contacts of nucleoli in drosophila cells suggests a role for rdna genes in global epigenetic regulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761670/
https://www.ncbi.nlm.nih.gov/pubmed/33287227
http://dx.doi.org/10.3390/cells9122587
work_keys_str_mv AT tchurikovnickolaia dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT klushevskayaelenas dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT fedoseevadariam dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT alembekovildarr dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT kravatskayagalinai dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT chechetkinvladimirr dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT kravatskyyuriv dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation
AT kretovaolgav dynamicsofwholegenomecontactsofnucleoliindrosophilacellssuggestsaroleforrdnagenesinglobalepigeneticregulation