Compound heterozygous mutations in CFTR causing congenital bilateral absence of the vas deferens in a Chinese pedigree

Author:

Li Lingyi1ORCID,Qu Xiaowei1ORCID,Cui Chenchen1,Feng Ke1,Xia Yanqing1,Wan Feng1ORCID,Ge Hengtao1,Fang Yinghong2,Zhang Cuilian1ORCID,Guo Haibin1ORCID

Affiliation:

1. Department of Reproductive Medicine Center People's Hospital of Henan University, Henan Provincial People's Hospital Zhengzhou Henan China

2. Department of Reproductive Medicine Center Zhengzhou University People's Hospital Zhengzhou Henan China

Abstract

AbstractBackgroundCystic fibrosis (CF) is an autosomal recessive disorder rarely found in Asian populations. Most males with CF are infertile because of obstructive azoospermia (OA) caused by congenital bilateral absence of the vas deferens (CBAVD). Compound heterozygous mutations of cystic fibrosis transmembrane conductance regulator (CFTR) are among the most common pathogenic factors in CBAVD. However, few genealogical analyses have been performed.MethodsIn this study, whole‐exome sequencing and cosegregation analysis were performed in a Chinese pedigree involving two siblings with CBAVD. Moreover, in vitro gene expressions were used to analyze the pathogenicity of a novel CFTR mutation.ResultsWe identified compound heterozygous mutations of CFTR comprising the known disease‐causing variant c.1210‐11T>G (also known as IVS9‐5 T) and c.2144delA;p.q715fs in two siblings with CBAVD. To verify the effects in vitro, we transfected vectors expressing wild‐type and mutated CFTR into 293T cells. The results showed that the CFTR protein containing the frameshift mutation (c.2144delA) was 60 kD smaller. With testicular sperm aspiration/intracytoplasmic sperm injection‐embryo transfer (TESA/ICSI‐ET), both CBAVD patients fathered healthy offspring.ConclusionOur study revealed that compound heterozygous mutations of CFTR are involved in CBAVD, expanding the known CFTR gene mutation spectrum of CBAVD patients and providing more evidence that compound heterozygous mutations can cause familial CBAVD.

Funder

Henan Provincial Science and Technology Research Project

Publisher

Wiley

Subject

Genetics (clinical),Genetics,Molecular Biology

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