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Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation

RUNX2 is an essential transcription factor required for skeletal development and cartilage formation. Haploinsufficiency of RUNX2 leads to cleidocranial displaysia (CCD) a skeletal disorder characterised by gross dysgenesis of bones particularly those derived from intramembranous bone formation. A n...

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Autores principales: Morrison, Nigel A., Stephens, Alexandre A., Osato, Motomi, Polly, Patsie, Tan, Timothy C., Yamashita, Namiko, Doecke, James D., Pasco, Julie, Fozzard, Nicolette, Jones, Graeme, Ralston, Stuart H., Sambrook, Philip N., Prince, Richard L., Nicholson, Geoff C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3418257/
https://www.ncbi.nlm.nih.gov/pubmed/22912713
http://dx.doi.org/10.1371/journal.pone.0042617
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author Morrison, Nigel A.
Stephens, Alexandre A.
Osato, Motomi
Polly, Patsie
Tan, Timothy C.
Yamashita, Namiko
Doecke, James D.
Pasco, Julie
Fozzard, Nicolette
Jones, Graeme
Ralston, Stuart H.
Sambrook, Philip N.
Prince, Richard L.
Nicholson, Geoff C.
author_facet Morrison, Nigel A.
Stephens, Alexandre A.
Osato, Motomi
Polly, Patsie
Tan, Timothy C.
Yamashita, Namiko
Doecke, James D.
Pasco, Julie
Fozzard, Nicolette
Jones, Graeme
Ralston, Stuart H.
Sambrook, Philip N.
Prince, Richard L.
Nicholson, Geoff C.
author_sort Morrison, Nigel A.
collection PubMed
description RUNX2 is an essential transcription factor required for skeletal development and cartilage formation. Haploinsufficiency of RUNX2 leads to cleidocranial displaysia (CCD) a skeletal disorder characterised by gross dysgenesis of bones particularly those derived from intramembranous bone formation. A notable feature of the RUNX2 protein is the polyglutamine and polyalanine (23Q/17A) domain coded by a repeat sequence. Since none of the known mutations causing CCD characterised to date map in the glutamine repeat region, we hypothesised that Q-repeat mutations may be related to a more subtle bone phenotype. We screened subjects derived from four normal populations for Q-repeat variants. A total of 22 subjects were identified who were heterozygous for a wild type allele and a Q-repeat variant allele: (15Q, 16Q, 18Q and 30Q). Although not every subject had data for all measures, Q-repeat variants had a significant deficit in BMD with an average decrease of 0.7SD measured over 12 BMD-related parameters (p = 0.005). Femoral neck BMD was measured in all subjects (−0.6SD, p = 0.0007). The transactivation function of RUNX2 was determined for 16Q and 30Q alleles using a reporter gene assay. 16Q and 30Q alleles displayed significantly lower transactivation function compared to wild type (23Q). Our analysis has identified novel Q-repeat mutations that occur at a collective frequency of about 0.4%. These mutations significantly alter BMD and display impaired transactivation function, introducing a new class of functionally relevant RUNX2 mutants.
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spelling pubmed-34182572012-08-21 Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation Morrison, Nigel A. Stephens, Alexandre A. Osato, Motomi Polly, Patsie Tan, Timothy C. Yamashita, Namiko Doecke, James D. Pasco, Julie Fozzard, Nicolette Jones, Graeme Ralston, Stuart H. Sambrook, Philip N. Prince, Richard L. Nicholson, Geoff C. PLoS One Research Article RUNX2 is an essential transcription factor required for skeletal development and cartilage formation. Haploinsufficiency of RUNX2 leads to cleidocranial displaysia (CCD) a skeletal disorder characterised by gross dysgenesis of bones particularly those derived from intramembranous bone formation. A notable feature of the RUNX2 protein is the polyglutamine and polyalanine (23Q/17A) domain coded by a repeat sequence. Since none of the known mutations causing CCD characterised to date map in the glutamine repeat region, we hypothesised that Q-repeat mutations may be related to a more subtle bone phenotype. We screened subjects derived from four normal populations for Q-repeat variants. A total of 22 subjects were identified who were heterozygous for a wild type allele and a Q-repeat variant allele: (15Q, 16Q, 18Q and 30Q). Although not every subject had data for all measures, Q-repeat variants had a significant deficit in BMD with an average decrease of 0.7SD measured over 12 BMD-related parameters (p = 0.005). Femoral neck BMD was measured in all subjects (−0.6SD, p = 0.0007). The transactivation function of RUNX2 was determined for 16Q and 30Q alleles using a reporter gene assay. 16Q and 30Q alleles displayed significantly lower transactivation function compared to wild type (23Q). Our analysis has identified novel Q-repeat mutations that occur at a collective frequency of about 0.4%. These mutations significantly alter BMD and display impaired transactivation function, introducing a new class of functionally relevant RUNX2 mutants. Public Library of Science 2012-08-13 /pmc/articles/PMC3418257/ /pubmed/22912713 http://dx.doi.org/10.1371/journal.pone.0042617 Text en © 2012 Morrison 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Morrison, Nigel A.
Stephens, Alexandre A.
Osato, Motomi
Polly, Patsie
Tan, Timothy C.
Yamashita, Namiko
Doecke, James D.
Pasco, Julie
Fozzard, Nicolette
Jones, Graeme
Ralston, Stuart H.
Sambrook, Philip N.
Prince, Richard L.
Nicholson, Geoff C.
Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title_full Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title_fullStr Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title_full_unstemmed Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title_short Glutamine Repeat Variants in Human RUNX2 Associated with Decreased Femoral Neck BMD, Broadband Ultrasound Attenuation and Target Gene Transactivation
title_sort glutamine repeat variants in human runx2 associated with decreased femoral neck bmd, broadband ultrasound attenuation and target gene transactivation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3418257/
https://www.ncbi.nlm.nih.gov/pubmed/22912713
http://dx.doi.org/10.1371/journal.pone.0042617
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