New Mutations in DNHD1 Cause Multiple Morphological Abnormalities of the Sperm Flagella
Guillaume Martinez1,2, Anne-Laure Barbotin3, Caroline Cazin2,4
1CHU Grenoble Alpes, UM de Génétique Chromosomique, 38000 Grenoble, France.
Abstract:
Male infertility is a common and complex disease and presents as a wide range of heterogeneous phenotypes. Multiple morphological abnormalities of the sperm flagellum (MMAF) phenotype is a peculiar condition of extreme morphological sperm defects characterized by a mosaic of sperm flagellum defects to a total asthenozoospermia. At this time, about 40 genes were associated with the MMAF phenotype. However, mutation prevalence for most genes remains individually low and about half of individuals remain without diagnosis, encouraging us to pursue the effort to identify new mutations and genes. In the present study, an a cohort of 167 MMAF patients was analyzed using whole-exome sequencing, and we identified three unrelated patients with new pathogenic mutations in DNHD1, a new gene recently associated with MMAF. Immunofluorescence experiments showed that DNHD1 was totally absent from sperm cells from DNHD1 patients, supporting the deleterious effect of the identified mutations. Transmission electron microscopy reveals severe flagellum abnormalities of sperm cells from one mutated patient, which appeared completely disorganized with the absence of the central pair and midpiece defects with a shortened and misshapen mitochondrial sheath. Immunostaining of IFT20 was not altered in mutated patients, suggesting that IFT may be not affected by DNHD1 mutations. Our data confirmed the importance of DNHD1 for the function and structural integrity of the sperm flagellum. Overall, this study definitively consolidated its involvement in MMAF phenotype on a second independent cohort and enriched the mutational spectrum of the DNHD1 gene.
Insights
This study identifies new pathogenic mutations in the DNHD1 gene in patients with multiple morphological abnormalities of the sperm flagellum (MMAF). These findings confirm DNHD1
Area of Science:
- Genetics
- Reproductive Biology
- Male Infertility
Background:
- Male infertility affects many individuals, with Multiple Morphological Abnormalities of the Sperm Flagellum (MMAF) presenting complex sperm defects.
- Approximately 40 genes are linked to MMAF, yet many patients remain undiagnosed, necessitating further genetic research.
Purpose of the Study:
- To identify novel genetic causes of MMAF by analyzing a cohort of patients.
- To investigate the role of the DNHD1 gene in sperm flagellum structure and function.
Main Methods:
- Whole-exome sequencing was performed on 167 MMAF patients.
- Immunofluorescence and transmission electron microscopy were used to analyze sperm cells from patients with DNHD1 mutations.
Main Results:
- Three unrelated patients with new pathogenic DNHD1 mutations were identified.
- DNHD1 protein was absent in sperm cells of affected patients, correlating with severe flagellum abnormalities.
- The study confirmed DNHD1's critical role in sperm flagellum integrity.
Conclusions:
- DNHD1 is a significant gene involved in MMAF, expanding the known genetic spectrum for this condition.
- This research reinforces the importance of DNHD1 for normal sperm function and provides diagnostic insights.
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