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Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case

Skeletal Class III malocclusion with maxillary deficiency is a severe maxillofacial disease with unclear pathogenic mechanisms. We recruited a Han Chinese family who was clinically diagnosed with skeletal Class III malocclusion and maxillary deficiency. Using whole exome sequencing, a missense varia...

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Autores principales: Yao, Siyue, Zhou, Xi, Vona, Barbara, Fan, Liwen, Zhang, Chengcheng, Li, Dandan, Yuan, Hua, Du, Yifei, Ma, Lan, Pan, Yongchu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505033/
https://www.ncbi.nlm.nih.gov/pubmed/36142585
http://dx.doi.org/10.3390/ijms231810673
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author Yao, Siyue
Zhou, Xi
Vona, Barbara
Fan, Liwen
Zhang, Chengcheng
Li, Dandan
Yuan, Hua
Du, Yifei
Ma, Lan
Pan, Yongchu
author_facet Yao, Siyue
Zhou, Xi
Vona, Barbara
Fan, Liwen
Zhang, Chengcheng
Li, Dandan
Yuan, Hua
Du, Yifei
Ma, Lan
Pan, Yongchu
author_sort Yao, Siyue
collection PubMed
description Skeletal Class III malocclusion with maxillary deficiency is a severe maxillofacial disease with unclear pathogenic mechanisms. We recruited a Han Chinese family who was clinically diagnosed with skeletal Class III malocclusion and maxillary deficiency. Using whole exome sequencing, a missense variant in ADAMTS2 (NM_014244: c.3506G>T: p.G1169V) was identified and predicted as deleterious by in silico tools. We also found ADAMTS2 variants associated with deficient maxillary development in a cohort. ADAMTS2 expression in HEK293 cells showed significant decrease due to the variant, which was also consistent in dental pulp stem cells from the proband and a healthy control. In the adamts2-knockdown zebrafish model, the length and width of the ethmoid plate, as well as the length of the palatoquadrate became significantly shorter than the control group (p < 0.001), while there was no significant difference in the length and width of the mandible. The expression of Sox3, which was required in early embryonic craniofacial development, was significantly downregulated in the adamts2-knockdown zebrafish embryos. Bioinformatic and cellular studies showed that the decreased expression of ADAMTS2 may inhibit downstream ErbB signaling pathway transduction and restrain subsequent osteogenesis in human adult mesenchymal stromal cells. Collectively, these data showed that ADAMTS2 (c.3506G>T: p.G1169V) may confer susceptibility to risk of skeletal Class III malocclusion with maxillary deficiency.
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spelling pubmed-95050332022-09-24 Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case Yao, Siyue Zhou, Xi Vona, Barbara Fan, Liwen Zhang, Chengcheng Li, Dandan Yuan, Hua Du, Yifei Ma, Lan Pan, Yongchu Int J Mol Sci Article Skeletal Class III malocclusion with maxillary deficiency is a severe maxillofacial disease with unclear pathogenic mechanisms. We recruited a Han Chinese family who was clinically diagnosed with skeletal Class III malocclusion and maxillary deficiency. Using whole exome sequencing, a missense variant in ADAMTS2 (NM_014244: c.3506G>T: p.G1169V) was identified and predicted as deleterious by in silico tools. We also found ADAMTS2 variants associated with deficient maxillary development in a cohort. ADAMTS2 expression in HEK293 cells showed significant decrease due to the variant, which was also consistent in dental pulp stem cells from the proband and a healthy control. In the adamts2-knockdown zebrafish model, the length and width of the ethmoid plate, as well as the length of the palatoquadrate became significantly shorter than the control group (p < 0.001), while there was no significant difference in the length and width of the mandible. The expression of Sox3, which was required in early embryonic craniofacial development, was significantly downregulated in the adamts2-knockdown zebrafish embryos. Bioinformatic and cellular studies showed that the decreased expression of ADAMTS2 may inhibit downstream ErbB signaling pathway transduction and restrain subsequent osteogenesis in human adult mesenchymal stromal cells. Collectively, these data showed that ADAMTS2 (c.3506G>T: p.G1169V) may confer susceptibility to risk of skeletal Class III malocclusion with maxillary deficiency. MDPI 2022-09-14 /pmc/articles/PMC9505033/ /pubmed/36142585 http://dx.doi.org/10.3390/ijms231810673 Text en © 2022 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
Yao, Siyue
Zhou, Xi
Vona, Barbara
Fan, Liwen
Zhang, Chengcheng
Li, Dandan
Yuan, Hua
Du, Yifei
Ma, Lan
Pan, Yongchu
Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title_full Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title_fullStr Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title_full_unstemmed Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title_short Skeletal Class III Malocclusion Is Associated with ADAMTS2 Variants and Reduced Expression in a Familial Case
title_sort skeletal class iii malocclusion is associated with adamts2 variants and reduced expression in a familial case
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505033/
https://www.ncbi.nlm.nih.gov/pubmed/36142585
http://dx.doi.org/10.3390/ijms231810673
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