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A. Malcher

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Open access Jul 2026

Identification of novel variants in SSX1, CPNE1, and SPTBN5 in men with oligoasthenoteratozoospermia using whole-genome sequencing.

Reduced sperm count, impaired motility, and abnormal morphology are characteristics of oligoasthenoteratozoospermia (OAT). Genetic factors play an important role in spermatogenic failure, but the molecular basis of OAT is still not fully understood. Whole-genome sequencing (WGS) was performed in 17 infertile men with normal karyotypes and no Y-chromosome microdeletions, including 10 patients with azoospermia and 7 with OAT. Among the OAT group, three patients carrying prioritized rare variants with potential relevance to spermatogenesis were selected for detailed analysis and presentation in the current study. Variants were called using DeepVariant, and they were annotated by Ensembl Variant Effect Predictor (VEP). Variants were prioritized based on low allele frequency (< 1% in gnomAD), predicted functional impact, relevance to spermatogenesis, and consistency with a recessive inheritance model. Candidate variants were validated by Sanger sequencing and inspection of BAM files. Structural protein modeling and characterization of mutation-induced changes in molecular interactions were also performed using SWISS-MODEL and AlphaFold. We identified a hemizygous splice donor variant (c.*4 + 1G > T) in SSX1 and a missense variant (c.1190 A > G) in CPNE1 in one patient with OAT. SSX1 is a testis-expressed gene, while CPNE1 encodes a calcium-dependent phospholipid-binding protein. In another patient, a stop-gained variant (c.790 C > T) in SPTBN5 was identified, which encodes a spectrin beta chain protein. This study identifies rare candidate variants in SSX1, CPNE1, and SPTBN5 that may potentially be associated with the molecular basis of OAT. These findings provide preliminary evidence supporting further investigation of these genes in OAT and support the application of WGS in unresolved male infertility.

Sara Sadeghzadeh, A. Malcher, Razieh Ebrahimi Askari et al. · 0 citations
Open access Aug 2026

Whole-Genome Sequencing Identifies Potentially Causative Variants in SOX30, AKAP4, and RNF220 in Non-Obstructive Azoospermia

More than 70% of non-obstructive azoospermia (NOA) cases remain idiopathic, and the underlying genetic causes need to be investigated. In this study, we aimed to identify genes and variants associated with the etiology of NOA. Two NOA patients from consanguineous families, with normal karyotypes and no Y-chromosome microdeletions, were selected for whole-genome sequencing (WGS). Candidate variants were validated by Sanger sequencing. Structural protein modeling and assessment of mutation-induced changes in molecular interactions were performed using SWISS-MODEL and AlphaFold. We identified a candidate homozygous missense variant (c.899C>T, p.(Ser300Phe); rs375931805) in SOX30 in one patient; this transcription factor is highly expressed in the testis. In the second patient, a homozygous missense variant (c.1472C>T, p.(Thr491Met); rs746902232) in RNF220 and a hemizygous missense variant (c.2354A>G, p.(Gln785Arg) in the X-linked AKAP4 gene were simultaneously detected. Previous studies have shown that SOX30 knockout in mice leads to meiosis I arrest and impaired spermiogenesis. AKAP4 is exclusively expressed in the testis, and missense variants have been reported in different forms of male infertility. The co-occurrence of variants in AKAP4 and RNF220 may suggest an oligogenic etiology of NOA and contribute to the phenotypic variability associated with AKAP4 variants.

Razieh Ebrahimi Askari, A. Malcher, Fateme Sefid et al. · 0 citations