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8 November 2021 Genetic mutation analysis of 22 patients with congenital absence of vas deferens: a single-center study
Mao-Qing Tan, Wu-Jian Huang, Feng-Hua Lan, Yong-Jun Xu, Mei-Yu Zheng, Ying Tang
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Abstract

Congenital absence of the vas deferens (CAVD), a congenital malformation of the male reproductive system, causes obstructive azoospermia and male infertility. Currently, the cystic fibrosis transmembrane conductance regulator (CFTR) has been recognized as the main pathogenic gene in CAVD, with some other genes, such as adhesion G-protein-coupled receptor G2 (ADGRG2), solute carrier family 9 isoform 3 (SLC9A3), sodium channel epithelial 1 subunit beta (SCNN1B), and carbonic anhydrase 12 (CA12), being candidate genes in the pathogenesis of CAVD. However, the frequency and spectrum of these mutations, as well as the pathogenic mechanisms of CAVD, have not been fully investigated. Here, we sequenced all genes with potentially pathogenic mutations using next-generation sequencing and verified all identified variants by Sanger sequencing. Further bioinformatic analysis was performed to predict the pathogenicity of mutations. We described the distribution of the p.V470M, poly-T, and TG-repeat CFTR polymorphisms and identified novel missense mutations in the CFTR and SLC9A3 genes, respectively. Taken together, we identified mutations in the CFTR, ADGRG2, SLC9A3, SCNN1B, and CA12 genes in 22 patients with CAVD, thus broadening the genetic spectrum of Chinese patients with CAVD.

Summary sentence

Fifteen CFTR mutations including a novel one were identified in 22 patients with CAVD. The distributions of p.V470M, poly-T, and TG-repeat CFTR polymorphisms were described. Novel missense mutations in CFTR and SLC9A3 were identified.

Graphical Abstract

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© The Author(s) 2021. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Mao-Qing Tan, Wu-Jian Huang, Feng-Hua Lan, Yong-Jun Xu, Mei-Yu Zheng, and Ying Tang "Genetic mutation analysis of 22 patients with congenital absence of vas deferens: a single-center study," Biology of Reproduction 106(1), 108-117, (8 November 2021). https://doi.org/10.1093/biolre/ioab194
Received: 20 May 2021; Accepted: 15 October 2021; Published: 8 November 2021
KEYWORDS
adhesion G-protein-coupled receptor G2
carbonic anhydrase 12
congenital absence of the vas deferens
cystic fibrosis transmembrane conductance regulator
sodium channel epithelial 1 subunit beta
solute carrier family 9 isoform 3
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