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THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation

Twelve human THAP proteins share the THAP domain, an evolutionary conserved zinc-finger DNA-binding domain. Studies of different THAP proteins have indicated roles in gene transcription, cell proliferation and development. We have analyzed this protein family, focusing on THAP7 and THAP11. We show t...

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Autores principales: Dehaene, Harmonie, Praz, Viviane, Lhôte, Philippe, Lopes, Maykel, Herr, Winship
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944463/
https://www.ncbi.nlm.nih.gov/pubmed/31905202
http://dx.doi.org/10.1371/journal.pone.0224646
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author Dehaene, Harmonie
Praz, Viviane
Lhôte, Philippe
Lopes, Maykel
Herr, Winship
author_facet Dehaene, Harmonie
Praz, Viviane
Lhôte, Philippe
Lopes, Maykel
Herr, Winship
author_sort Dehaene, Harmonie
collection PubMed
description Twelve human THAP proteins share the THAP domain, an evolutionary conserved zinc-finger DNA-binding domain. Studies of different THAP proteins have indicated roles in gene transcription, cell proliferation and development. We have analyzed this protein family, focusing on THAP7 and THAP11. We show that human THAP proteins possess differing homo- and heterodimer formation properties and interaction abilities with the transcriptional co-regulator HCF-1. HEK-293 cells lacking THAP7 were viable but proliferated more slowly. In contrast, HEK-293 cells were very sensitive to THAP11 alteration. Nevertheless, HEK-293 cells bearing a THAP11 mutation identified in a patient suffering from cobalamin disorder (THAP11(F80L)) were viable although proliferated more slowly. Cobalamin disorder is an inborn vitamin deficiency characterized by neurodevelopmental abnormalities, most often owing to biallelic mutations in the MMACHC gene, whose gene product MMACHC is a key enzyme in the cobalamin (vitamin B(12)) metabolic pathway. We show that THAP11(F80L) selectively affected promoter binding by THAP11, having more deleterious effects on a subset of THAP11 targets, and resulting in altered patterns of gene expression. In particular, THAP11(F80L) exhibited a strong effect on association with the MMACHC promoter and led to a decrease in MMACHC gene transcription, suggesting that the THAP11(F80L) mutation is directly responsible for the observed cobalamin disorder.
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spelling pubmed-69444632020-01-17 THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation Dehaene, Harmonie Praz, Viviane Lhôte, Philippe Lopes, Maykel Herr, Winship PLoS One Research Article Twelve human THAP proteins share the THAP domain, an evolutionary conserved zinc-finger DNA-binding domain. Studies of different THAP proteins have indicated roles in gene transcription, cell proliferation and development. We have analyzed this protein family, focusing on THAP7 and THAP11. We show that human THAP proteins possess differing homo- and heterodimer formation properties and interaction abilities with the transcriptional co-regulator HCF-1. HEK-293 cells lacking THAP7 were viable but proliferated more slowly. In contrast, HEK-293 cells were very sensitive to THAP11 alteration. Nevertheless, HEK-293 cells bearing a THAP11 mutation identified in a patient suffering from cobalamin disorder (THAP11(F80L)) were viable although proliferated more slowly. Cobalamin disorder is an inborn vitamin deficiency characterized by neurodevelopmental abnormalities, most often owing to biallelic mutations in the MMACHC gene, whose gene product MMACHC is a key enzyme in the cobalamin (vitamin B(12)) metabolic pathway. We show that THAP11(F80L) selectively affected promoter binding by THAP11, having more deleterious effects on a subset of THAP11 targets, and resulting in altered patterns of gene expression. In particular, THAP11(F80L) exhibited a strong effect on association with the MMACHC promoter and led to a decrease in MMACHC gene transcription, suggesting that the THAP11(F80L) mutation is directly responsible for the observed cobalamin disorder. Public Library of Science 2020-01-06 /pmc/articles/PMC6944463/ /pubmed/31905202 http://dx.doi.org/10.1371/journal.pone.0224646 Text en © 2020 Dehaene et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Dehaene, Harmonie
Praz, Viviane
Lhôte, Philippe
Lopes, Maykel
Herr, Winship
THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title_full THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title_fullStr THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title_full_unstemmed THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title_short THAP11(F80L) cobalamin disorder-associated mutation reveals normal and pathogenic THAP11 functions in gene expression and cell proliferation
title_sort thap11(f80l) cobalamin disorder-associated mutation reveals normal and pathogenic thap11 functions in gene expression and cell proliferation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6944463/
https://www.ncbi.nlm.nih.gov/pubmed/31905202
http://dx.doi.org/10.1371/journal.pone.0224646
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