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UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes

Universal Minicircle Sequence binding proteins (UMSBPs) are CCHC-type zinc-finger proteins that bind the single-stranded G-rich UMS sequence, conserved at the replication origins of minicircles in the kinetoplast DNA, the mitochondrial genome of kinetoplastids. Trypanosoma brucei UMSBP2 has been rec...

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Autores principales: Soni, Awakash, Klebanov-Akopyan, Olga, Erben, Esteban, Plaschkes, Inbar, Benyamini, Hadar, Mitesser, Vera, Harel, Amnon, Yamin, Katereena, Onn, Itay, Shlomai, Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287944/
https://www.ncbi.nlm.nih.gov/pubmed/37207337
http://dx.doi.org/10.1093/nar/gkad402
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author Soni, Awakash
Klebanov-Akopyan, Olga
Erben, Esteban
Plaschkes, Inbar
Benyamini, Hadar
Mitesser, Vera
Harel, Amnon
Yamin, Katereena
Onn, Itay
Shlomai, Joseph
author_facet Soni, Awakash
Klebanov-Akopyan, Olga
Erben, Esteban
Plaschkes, Inbar
Benyamini, Hadar
Mitesser, Vera
Harel, Amnon
Yamin, Katereena
Onn, Itay
Shlomai, Joseph
author_sort Soni, Awakash
collection PubMed
description Universal Minicircle Sequence binding proteins (UMSBPs) are CCHC-type zinc-finger proteins that bind the single-stranded G-rich UMS sequence, conserved at the replication origins of minicircles in the kinetoplast DNA, the mitochondrial genome of kinetoplastids. Trypanosoma brucei UMSBP2 has been recently shown to colocalize with telomeres and to play an essential role in chromosome end protection. Here we report that TbUMSBP2 decondenses in vitro DNA molecules, which were condensed by core histones H2B, H4 or linker histone H1. DNA decondensation is mediated via protein-protein interactions between TbUMSBP2 and these histones, independently of its previously described DNA binding activity. Silencing of the TbUMSBP2 gene resulted in a significant decrease in the disassembly of nucleosomes in T. brucei chromatin, a phenotype that could be reverted, by supplementing the knockdown cells with TbUMSBP2. Transcriptome analysis revealed that silencing of TbUMSBP2 affects the expression of multiple genes in T. brucei, with a most significant effect on the upregulation of the subtelomeric variant surface glycoproteins (VSG) genes, which mediate the antigenic variation in African trypanosomes. These observations suggest that UMSBP2 is a chromatin remodeling protein that functions in the regulation of gene expression and plays a role in the control of antigenic variation in T. brucei.
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spelling pubmed-102879442023-06-24 UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes Soni, Awakash Klebanov-Akopyan, Olga Erben, Esteban Plaschkes, Inbar Benyamini, Hadar Mitesser, Vera Harel, Amnon Yamin, Katereena Onn, Itay Shlomai, Joseph Nucleic Acids Res Molecular Biology Universal Minicircle Sequence binding proteins (UMSBPs) are CCHC-type zinc-finger proteins that bind the single-stranded G-rich UMS sequence, conserved at the replication origins of minicircles in the kinetoplast DNA, the mitochondrial genome of kinetoplastids. Trypanosoma brucei UMSBP2 has been recently shown to colocalize with telomeres and to play an essential role in chromosome end protection. Here we report that TbUMSBP2 decondenses in vitro DNA molecules, which were condensed by core histones H2B, H4 or linker histone H1. DNA decondensation is mediated via protein-protein interactions between TbUMSBP2 and these histones, independently of its previously described DNA binding activity. Silencing of the TbUMSBP2 gene resulted in a significant decrease in the disassembly of nucleosomes in T. brucei chromatin, a phenotype that could be reverted, by supplementing the knockdown cells with TbUMSBP2. Transcriptome analysis revealed that silencing of TbUMSBP2 affects the expression of multiple genes in T. brucei, with a most significant effect on the upregulation of the subtelomeric variant surface glycoproteins (VSG) genes, which mediate the antigenic variation in African trypanosomes. These observations suggest that UMSBP2 is a chromatin remodeling protein that functions in the regulation of gene expression and plays a role in the control of antigenic variation in T. brucei. Oxford University Press 2023-05-19 /pmc/articles/PMC10287944/ /pubmed/37207337 http://dx.doi.org/10.1093/nar/gkad402 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Molecular Biology
Soni, Awakash
Klebanov-Akopyan, Olga
Erben, Esteban
Plaschkes, Inbar
Benyamini, Hadar
Mitesser, Vera
Harel, Amnon
Yamin, Katereena
Onn, Itay
Shlomai, Joseph
UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title_full UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title_fullStr UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title_full_unstemmed UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title_short UMSBP2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
title_sort umsbp2 is chromatin remodeler that functions in regulation of gene expression and suppression of antigenic variation in trypanosomes
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10287944/
https://www.ncbi.nlm.nih.gov/pubmed/37207337
http://dx.doi.org/10.1093/nar/gkad402
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