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X-linked ADGRG2 mutation and obstructive azoospermia in a large Pakistani family.

Authors :
Khan, Muhammad Jaseem
Khan, Muhammad Jaseem
Pollock, Nijole
Jiang, Huaiyang
Castro, Carlos
Nazli, Rubina
Ahmed, Jawad
Basit, Sulman
Rajkovic, Aleksandar
Yatsenko, Alexander N
Khan, Muhammad Jaseem
Khan, Muhammad Jaseem
Pollock, Nijole
Jiang, Huaiyang
Castro, Carlos
Nazli, Rubina
Ahmed, Jawad
Basit, Sulman
Rajkovic, Aleksandar
Yatsenko, Alexander N
Source :
Scientific reports; vol 8, iss 1, 16280; 2045-2322
Publication Year :
2018

Abstract

We performed whole exome sequencing to identify an unknown genetic cause of azoospermia and male infertility in a large Pakistani family. Three infertile males were subjected to semen analysis, hormone testing, testicular histology, ultrasonography, karyotyping, Y-chromosome microdeletion and CFTR testing. The clinical testing suggested a diagnosis of obstructive azoospermia (OA). To identify the cause, we performed whole exome sequencing (WES) for 2 infertile brothers and 2 fertile family members. For segregation analysis and variant confirmation, we performed Sanger sequencing. WES data analysis of the family revealed segregated variants in 3 candidate genes. We considered novel nonsense variant c.2440C > T(p.Arg814*) in X-linked gene ADGRG2 as biologically most plausible. It is predicted to truncate the protein by 204 amino acids (aa) at a key transmembrane domain. Adgrg2-knockout male mice show sperm loss due to obstructive fluid stasis, while ADGRG2 mutations cause OA in the infertile male patients. Our analysis of testicular histology reveals secondary severe reduction of spermatogenesis, consistent with human and knockout mouse phenotypes. The ADGRG2 nonsense mutation is absent in the largest population databases, ExAC and gnomAD. Analysis of the novel nonsense mutation in extended family members confirmed co-segregation of the mutation with OA in all affected males. The likely pathogenic nature of the mutation is supported by its truncation effect on the transmembrane domain and distinctive ultrasound results. The study demonstrates effectiveness of WES in discovering a genetic cause of azoospermia.

Details

Database :
OAIster
Journal :
Scientific reports; vol 8, iss 1, 16280; 2045-2322
Notes :
application/pdf, Scientific reports vol 8, iss 1, 16280 2045-2322
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367412450
Document Type :
Electronic Resource