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Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters

The expression of clusters of rDNA genes influences pluripotency; however, the underlying mechanisms are not yet known. These clusters shape inter-chromosomal contacts with numerous genes controlling differentiation in human and Drosophila cells. This suggests a possible role of these contacts in th...

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Autores principales: Tchurikov, Nickolai A., Klushevskaya, Elena S., Alembekov, Ildar R., Kretova, Antonina N., Chechetkin, Vladimir R., Kravatskaya, Galina I., Kravatsky, Yuri V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10298330/
https://www.ncbi.nlm.nih.gov/pubmed/37372991
http://dx.doi.org/10.3390/ijms24129842
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author Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Alembekov, Ildar R.
Kretova, Antonina N.
Chechetkin, Vladimir R.
Kravatskaya, Galina I.
Kravatsky, Yuri V.
author_facet Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Alembekov, Ildar R.
Kretova, Antonina N.
Chechetkin, Vladimir R.
Kravatskaya, Galina I.
Kravatsky, Yuri V.
author_sort Tchurikov, Nickolai A.
collection PubMed
description The expression of clusters of rDNA genes influences pluripotency; however, the underlying mechanisms are not yet known. These clusters shape inter-chromosomal contacts with numerous genes controlling differentiation in human and Drosophila cells. This suggests a possible role of these contacts in the formation of 3D chromosomal structures and the regulation of gene expression in development. However, it has not yet been demonstrated whether inter-chromosomal rDNA contacts are changed during differentiation. In this study, we used human leukemia K562 cells and induced their erythroid differentiation in order to study both the changes in rDNA contacts and the expression of genes. We observed that approximately 200 sets of rDNA-contacting genes are co-expressed in different combinations in both untreated and differentiated K562 cells. rDNA contacts are changed during differentiation and coupled with the upregulation of genes whose products are mainly located in the nucleus and are highly associated with DNA- and RNA-binding, along with the downregulation of genes whose products mainly reside in the cytoplasm or intra- or extracellular vesicles. The most downregulated gene is ID3, which is known as an inhibitor of differentiation, and thus should be switched off to allow for differentiation. Our data suggest that the differentiation of K562 cells leads to alterations in the inter-chromosomal contacts of rDNA clusters and 3D structures in particular chromosomal regions as well as to changes in the expression of genes located in the corresponding chromosomal domains. We conclude that approximately half of the rDNA-contacting genes are co-expressed in human cells and that rDNA clusters are involved in the global regulation of gene expression.
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spelling pubmed-102983302023-06-28 Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters Tchurikov, Nickolai A. Klushevskaya, Elena S. Alembekov, Ildar R. Kretova, Antonina N. Chechetkin, Vladimir R. Kravatskaya, Galina I. Kravatsky, Yuri V. Int J Mol Sci Article The expression of clusters of rDNA genes influences pluripotency; however, the underlying mechanisms are not yet known. These clusters shape inter-chromosomal contacts with numerous genes controlling differentiation in human and Drosophila cells. This suggests a possible role of these contacts in the formation of 3D chromosomal structures and the regulation of gene expression in development. However, it has not yet been demonstrated whether inter-chromosomal rDNA contacts are changed during differentiation. In this study, we used human leukemia K562 cells and induced their erythroid differentiation in order to study both the changes in rDNA contacts and the expression of genes. We observed that approximately 200 sets of rDNA-contacting genes are co-expressed in different combinations in both untreated and differentiated K562 cells. rDNA contacts are changed during differentiation and coupled with the upregulation of genes whose products are mainly located in the nucleus and are highly associated with DNA- and RNA-binding, along with the downregulation of genes whose products mainly reside in the cytoplasm or intra- or extracellular vesicles. The most downregulated gene is ID3, which is known as an inhibitor of differentiation, and thus should be switched off to allow for differentiation. Our data suggest that the differentiation of K562 cells leads to alterations in the inter-chromosomal contacts of rDNA clusters and 3D structures in particular chromosomal regions as well as to changes in the expression of genes located in the corresponding chromosomal domains. We conclude that approximately half of the rDNA-contacting genes are co-expressed in human cells and that rDNA clusters are involved in the global regulation of gene expression. MDPI 2023-06-07 /pmc/articles/PMC10298330/ /pubmed/37372991 http://dx.doi.org/10.3390/ijms24129842 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tchurikov, Nickolai A.
Klushevskaya, Elena S.
Alembekov, Ildar R.
Kretova, Antonina N.
Chechetkin, Vladimir R.
Kravatskaya, Galina I.
Kravatsky, Yuri V.
Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title_full Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title_fullStr Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title_full_unstemmed Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title_short Induction of the Erythroid Differentiation of K562 Cells Is Coupled with Changes in the Inter-Chromosomal Contacts of rDNA Clusters
title_sort induction of the erythroid differentiation of k562 cells is coupled with changes in the inter-chromosomal contacts of rdna clusters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10298330/
https://www.ncbi.nlm.nih.gov/pubmed/37372991
http://dx.doi.org/10.3390/ijms24129842
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