Identification and functional study of a novel variant of PAX9 causing tooth agenesis

Author:

Lei Rong12ORCID,Qiu Xili13,Han Ying45,Li Fenghua1,Dong Xin45,Pei Saimin2,Zeng Ting12,Ge Minmin1,Hu Zhengmao45,Tian Qi45,Peng Ling1ORCID,Huang Junhui1

Affiliation:

1. Hunan Key Laboratory of Oral Health Research & Hunan 3D Printing Engineering Research Center of Oral Care & Hunan Clinical Research Center of Oral Major Diseases and Oral Health & Xiangya Stomatological Hospital & Xiangya School of Stomatology, Central South University Changsha Hunan China

2. The First People's Hospital of Changde City Changde Hunan China

3. Molecular Biology Research Center, Center for Medical Genetics, School of Life Sciences; Hunan Province Key Laboratory of Basic and Applied Hematology, Central South University Changsha Hunan China

4. School of Life Sciences, Central South University Changsha Hunan China

5. Center for Medical Genetics &Hunan Key Laboratory of Medical Genetics Changsha Hunan China

Abstract

AbstractObjectivesTo search for pathogenic gene of a family with non‐syndromic tooth agenesis, and explore the possible pathogenesis.Materials and MethodsA Chinese family with non‐syndromic tooth agenesis was recruited and screened for the pathogenic variants by whole exome sequencing technology and co‐segregation analysis. The subcellular localization of wild‐type and mutant protein was detected by immunofluorescence assay. Cycloheximide chase assay was performed to examine the difference in degradation rate between mutant protein and wild‐type one. Dual‐luciferase reporter assays were conducted to explore the alterations of mutant protein in the regulation of downstream target genes.ResultsA novel missense variant of PAX9 (c.296C>A:p.A99D) was found in this family. Bioinformatics software showed β‐return and the random coil were shortened in the p.A99D. The variant did not affect the subcellular localization of PAX9, but the degradation rate of p.A99D was accelerated (p < 0.05). p.A99D inhibited the activation of downstream target gene BMP4 (p < 0.05).ConclusionsThis novel variant expands the pathogenic gene spectrum. The variant impaired the protein structure, accelerated the degradation of protein, and inhibited the activation of the downstream target gene BMP4, an upstream molecule in the TGF‐β/BMP pathway, which may contribute to tooth agenesis in this family.

Publisher

Wiley

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