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Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression

Cleidocranial dysplasia (CCD), a dominantly inherited skeletal disease, is characterized by a variable phenotype ranging from dental alterations to severe skeletal defects. Either de novo or inherited mutations in the RUNX2 gene have been identified in most CCD patients. Transcription factor RUNX2,...

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Autores principales: Dalle Carbonare, Luca, Antoniazzi, Franco, Gandini, Alberto, Orsi, Silvia, Bertacco, Jessica, Li Vigni, Veronica, Minoia, Arianna, Griggio, Francesca, Perduca, Massimiliano, Mottes, Monica, Valenti, Maria Teresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508986/
https://www.ncbi.nlm.nih.gov/pubmed/34638677
http://dx.doi.org/10.3390/ijms221910336
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author Dalle Carbonare, Luca
Antoniazzi, Franco
Gandini, Alberto
Orsi, Silvia
Bertacco, Jessica
Li Vigni, Veronica
Minoia, Arianna
Griggio, Francesca
Perduca, Massimiliano
Mottes, Monica
Valenti, Maria Teresa
author_facet Dalle Carbonare, Luca
Antoniazzi, Franco
Gandini, Alberto
Orsi, Silvia
Bertacco, Jessica
Li Vigni, Veronica
Minoia, Arianna
Griggio, Francesca
Perduca, Massimiliano
Mottes, Monica
Valenti, Maria Teresa
author_sort Dalle Carbonare, Luca
collection PubMed
description Cleidocranial dysplasia (CCD), a dominantly inherited skeletal disease, is characterized by a variable phenotype ranging from dental alterations to severe skeletal defects. Either de novo or inherited mutations in the RUNX2 gene have been identified in most CCD patients. Transcription factor RUNX2, the osteogenic master gene, plays a central role in the commitment of mesenchymal stem cells to osteoblast lineage. With the aim to analyse the effects of RUNX2 mutations in CCD patients, we investigated RUNX2 gene expression and the osteogenic potential of two CCD patients’ cells. In addition, with the aim to better understand how RUNX2 mutations interfere with osteogenic differentiation, we performed string analyses to identify proteins interacting with RUNX2 and analysed p53 expression levels. Our findings demonstrated for the first time that, in addition to the alteration of downstream gene expression, RUNX2 mutations impair p53 expression affecting osteogenic maturation. In conclusion, the present work provides new insights into the role of RUNX2 mutations in CCD patients and suggests that an in-depth analysis of the RUNX2-associated gene network may contribute to better understand the complex molecular and phenotypic alterations in mutant subjects.
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spelling pubmed-85089862021-10-13 Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression Dalle Carbonare, Luca Antoniazzi, Franco Gandini, Alberto Orsi, Silvia Bertacco, Jessica Li Vigni, Veronica Minoia, Arianna Griggio, Francesca Perduca, Massimiliano Mottes, Monica Valenti, Maria Teresa Int J Mol Sci Article Cleidocranial dysplasia (CCD), a dominantly inherited skeletal disease, is characterized by a variable phenotype ranging from dental alterations to severe skeletal defects. Either de novo or inherited mutations in the RUNX2 gene have been identified in most CCD patients. Transcription factor RUNX2, the osteogenic master gene, plays a central role in the commitment of mesenchymal stem cells to osteoblast lineage. With the aim to analyse the effects of RUNX2 mutations in CCD patients, we investigated RUNX2 gene expression and the osteogenic potential of two CCD patients’ cells. In addition, with the aim to better understand how RUNX2 mutations interfere with osteogenic differentiation, we performed string analyses to identify proteins interacting with RUNX2 and analysed p53 expression levels. Our findings demonstrated for the first time that, in addition to the alteration of downstream gene expression, RUNX2 mutations impair p53 expression affecting osteogenic maturation. In conclusion, the present work provides new insights into the role of RUNX2 mutations in CCD patients and suggests that an in-depth analysis of the RUNX2-associated gene network may contribute to better understand the complex molecular and phenotypic alterations in mutant subjects. MDPI 2021-09-25 /pmc/articles/PMC8508986/ /pubmed/34638677 http://dx.doi.org/10.3390/ijms221910336 Text en © 2021 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
Dalle Carbonare, Luca
Antoniazzi, Franco
Gandini, Alberto
Orsi, Silvia
Bertacco, Jessica
Li Vigni, Veronica
Minoia, Arianna
Griggio, Francesca
Perduca, Massimiliano
Mottes, Monica
Valenti, Maria Teresa
Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title_full Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title_fullStr Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title_full_unstemmed Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title_short Two Novel C-Terminus RUNX2 Mutations in Two Cleidocranial Dysplasia (CCD) Patients Impairing p53 Expression
title_sort two novel c-terminus runx2 mutations in two cleidocranial dysplasia (ccd) patients impairing p53 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508986/
https://www.ncbi.nlm.nih.gov/pubmed/34638677
http://dx.doi.org/10.3390/ijms221910336
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