4.7 Article

Whole-Exome Sequencing Identifies a Novel CPT2 Mutation in a Pedigree With Gout

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FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2022.802635

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whole-exome sequencing; novel mutation; gout; CPT2 gene; pedigree

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This study identified a rare CPT2 mutation in a large Chinese pedigree with gout. Functional studies revealed that the mutant protein induces protein degradation and affects the binding ability of CPT2 to UCP2. This study provides novel insight into the genetic etiology of gout.
Background: Gout is a common inflammatory arthritis, and its exact pathogenesis remains unclear. Multiple studies have demonstrated that genetic factors play important roles in the development of gout. This study aims to investigate the genetic basis of gout in a three-generation pedigree of affected individuals.Methods: Whole-exome sequencing (WES), comprehensive variant analyses, and co-segregation testing were performed. The effects of candidate variants on protein localization and cellular expression were analyzed, as were interactions with gout-related genes.Results: After comprehensive bioinformatic analysis, Sanger sequencing validation, and pedigree co-segregation analysis, we identified a rare heterozygous missense variant (c.1891C > T, p.R631C) in CPT2. Although no associated changes in localization were observed, the fluorescence intensity of p.R631C mutants was obviously reduced in comparison to the wild-type protein, suggesting that protein degradation is induced by the mutant. Furthermore, our results also indicate that the c.1891C > T variant influences the ability of CPT2 to bind UCP2.Conclusion: This study identified a rare CPT2 mutation in a large Chinese pedigree with gout. Functional studies were used to define the effect of this mutant. This study provides novel insight into the genetic etiology of gout.

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