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Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway
BACKGROUND: Polydactyly and syndactyly are congenital limb deformities, segregating in an autosomal‐dominant fashion. The variants in the GLI3 gene are closely related to congenital limb malformations. However, the causes underlying polydactyly and syndactyly are not well understood. METHODS: We con...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000928/ https://www.ncbi.nlm.nih.gov/pubmed/35218158 http://dx.doi.org/10.1002/mgg3.1895 |
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author | Shen, Xiaofang Zhang, Shun Zhang, Xin Zhou, Taifeng Rui, Yongjun |
author_facet | Shen, Xiaofang Zhang, Shun Zhang, Xin Zhou, Taifeng Rui, Yongjun |
author_sort | Shen, Xiaofang |
collection | PubMed |
description | BACKGROUND: Polydactyly and syndactyly are congenital limb deformities, segregating in an autosomal‐dominant fashion. The variants in the GLI3 gene are closely related to congenital limb malformations. However, the causes underlying polydactyly and syndactyly are not well understood. METHODS: We conducted a whole‐exome sequencing on two four‐generation Chinese families with polydactyly and syndactyly. Then c.2374C>T and c.1728C>A mutant plasmids were transfected to HEK293T cells and mice limb bud cells to explore the functional consequences of these variants. Western blot and real‐time quantitative PCR were used to analyze the expression of GLI3 and Shh. RESULTS: In these two families, the known GLI3 variant (NM_000168.6:c.2374C>T) and the novel GLI3 variant (NM_000168.6:c.1728C>A) contributed to polydactyly and syndactyly. Additionally, the GLI3 c.2374C>T mutant plasmid led to truncated GLI3 protein, and the GLI3 c.1728C>A mutant plasmid led to degraded GLI3 protein. Simultaneously, we demonstrated that the GLI3‐mutant plasmids led to decreased Shh expression in mice limb bud cells. CONCLUSION: We demonstrated that the novel GLI3 variant (c.1728C>A) and known GLI3 variant (c.2374C>T) contributed to the malformations in two four‐generation pedigrees with polydactyly and syndactyly by affecting SHH signaling. |
format | Online Article Text |
id | pubmed-9000928 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-90009282022-04-15 Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway Shen, Xiaofang Zhang, Shun Zhang, Xin Zhou, Taifeng Rui, Yongjun Mol Genet Genomic Med Original Articles BACKGROUND: Polydactyly and syndactyly are congenital limb deformities, segregating in an autosomal‐dominant fashion. The variants in the GLI3 gene are closely related to congenital limb malformations. However, the causes underlying polydactyly and syndactyly are not well understood. METHODS: We conducted a whole‐exome sequencing on two four‐generation Chinese families with polydactyly and syndactyly. Then c.2374C>T and c.1728C>A mutant plasmids were transfected to HEK293T cells and mice limb bud cells to explore the functional consequences of these variants. Western blot and real‐time quantitative PCR were used to analyze the expression of GLI3 and Shh. RESULTS: In these two families, the known GLI3 variant (NM_000168.6:c.2374C>T) and the novel GLI3 variant (NM_000168.6:c.1728C>A) contributed to polydactyly and syndactyly. Additionally, the GLI3 c.2374C>T mutant plasmid led to truncated GLI3 protein, and the GLI3 c.1728C>A mutant plasmid led to degraded GLI3 protein. Simultaneously, we demonstrated that the GLI3‐mutant plasmids led to decreased Shh expression in mice limb bud cells. CONCLUSION: We demonstrated that the novel GLI3 variant (c.1728C>A) and known GLI3 variant (c.2374C>T) contributed to the malformations in two four‐generation pedigrees with polydactyly and syndactyly by affecting SHH signaling. John Wiley and Sons Inc. 2022-02-26 /pmc/articles/PMC9000928/ /pubmed/35218158 http://dx.doi.org/10.1002/mgg3.1895 Text en © 2022 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made. |
spellingShingle | Original Articles Shen, Xiaofang Zhang, Shun Zhang, Xin Zhou, Taifeng Rui, Yongjun Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title | Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title_full | Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title_fullStr | Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title_full_unstemmed | Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title_short | Two nonsense GLI3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
title_sort | two nonsense gli3 variants are associated with polydactyly and syndactyly in two families by affecting the sonic hedgehog signaling pathway |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000928/ https://www.ncbi.nlm.nih.gov/pubmed/35218158 http://dx.doi.org/10.1002/mgg3.1895 |
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