A novel mutation in PCD‐associated gene DNAAF3 causes male infertility due to asthenozoospermia

Author:

Wan Feng123ORCID,Yu Lan123,Qu Xiaowei123,Xia Yanqing123,Feng Ke123,Zhang Lei123ORCID,Zhang Na4,Zhao Guihua4,Zhang Cuilian123,Guo Haibin123

Affiliation:

1. The Reproductive Medicine Center Henan Provincial People's Hospital Zhengzhou China

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

3. The Reproductive Medicine Center Henan Provincial People's Hospital of Henan University Zhengzhou China

4. Department of Cardiopulmonary Function Henan Provincial People's Hospital Zhengzhou China

Abstract

AbstractPrimary ciliary dyskinesia (PCD) is a rare autosomal‐recessive disease manifested with recurrent infections of respiratory tract and infertility. DNAAF3 is identified as a novel gene associated with PCD and different mutations in DNAAF3 results in different clinical features of PCD patients, such as situs inversus, sinusitis and bronchiectasis. However, the sperm phenotypic characteristics of PCD males are generally poorly investigated. Our reproductive medicine centre received a case of PCD patient with infertility, who presented with sinusitis, recurrent infections of the lower airway and severe asthenozoospermia; However, no situs inversus was found in the patient. A novel homozygous mutation in DNAAF3(c.551T>A; p.V184E) was identified in the PCD patient by whole‐exome sequencing. Subsequent Sanger sequencing further confirmed that the DNAAF3 had a homozygous missense variant in the fifth exon. Transmission electron microscopy and immunostaining analysis of the sperms from the patient showed a complete absence of outer dynein arms and partial absence of inner dynein arms, which resulted in the reduction in sperm motility. However, this infertility was overcome by intracytoplasmic sperm injections, as his wife achieved successful pregnancy. These findings showed that the PCD‐associated pathogenic mutation within DNAAF3 also causes severe asthenozoospermia and male infertility ultimately due to sperm flagella axoneme defect in humans. Our study not only contributes to understand the sperm phenotypic characteristics of patients with DNAAF3 mutations but also expands the spectrum of DNAAF3 mutations and may contribute to the genetic diagnosis and therapy for infertile patient with PCD.

Publisher

Wiley

Subject

Cell Biology,Molecular Medicine

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