Validation and application of a novel integrated genetic screening method to a cohort of 1,112 men with idiopathic azoospermia or severe oligozoospermia.
Manon S OudLiliana RamosMoira K O'BryanRobert I McLachlanÖzlem OkutmanStephane VivillePetra F de VriesDominique F C M SmeetsDorien LugtenbergJayne Y Hehir-KwaChristian GilissenMaartje van de VorstLisenka E L M VissersAlexander HoischenAukje M MeijerinkKathrin FleischerJoris A VeltmanMichiel J NoordamPublished in: Human mutation (2017)
Microdeletions of the Y chromosome (YCMs), Klinefelter syndrome (47,XXY), and CFTR mutations are known genetic causes of severe male infertility, but the majority of cases remain idiopathic. Here, we describe a novel method using single molecule Molecular Inversion Probes (smMIPs), to screen infertile men for mutations and copy number variations affecting known disease genes. We designed a set of 4,525 smMIPs targeting the coding regions of causal (n = 6) and candidate (n = 101) male infertility genes. After extensive validation, we screened 1,112 idiopathic infertile men with non-obstructive azoospermia or severe oligozoospermia. In addition to five chromosome YCMs and six other sex chromosomal anomalies, we identified five patients with rare recessive mutations in CFTR as well as a patient with a rare heterozygous frameshift mutation in SYCP3 that may be of clinical relevance. This results in a genetic diagnosis in 11-17 patients (1%-1.5%), a yield that may increase significantly when more genes are confidently linked to male infertility. In conclusion, we developed a flexible and scalable method to reliably detect genetic causes of male infertility. The assay consolidates the detection of different types of genetic variation while increasing the diagnostic yield and detection precision at the same or lower price compared with currently used methods.
Keyphrases
- copy number
- genome wide
- single molecule
- mitochondrial dna
- polycystic ovary syndrome
- dna methylation
- early onset
- cystic fibrosis
- end stage renal disease
- case report
- high throughput
- middle aged
- ejection fraction
- chronic kidney disease
- living cells
- metabolic syndrome
- type diabetes
- prognostic factors
- computed tomography
- cancer therapy
- transcription factor
- loop mediated isothermal amplification
- genome wide identification
- gene expression
- insulin resistance
- autism spectrum disorder
- magnetic resonance
- drug induced
- drug delivery
- nucleic acid