Identification of a novel CFAP61 homozygous splicing variant associated with multiple morphological abnormalities of the flagella.
Anne-Laure BarbotinAngèle BoursierAnne-Sophie JourdainAlexandre MoermanBaptiste RabatMariam ChehimiCaroline ThuillierJamal GhoumidThomas SmolPublished in: Journal of assisted reproduction and genetics (2024)
In this study, we investigated the role of a newly identified homozygous variant (c.1245 + 6T > C) in the CFAP61 gene in the development of multiple morphologically abnormal flagella (MMAF) in an infertile patient. Using exome sequencing, we identified this variant, which led to exon 12 skipping and the production of a truncated CFAP61 protein. Transmission electron microscopy analysis of the patient's spermatozoa revealed various flagellar abnormalities, including defective nuclear chromatin condensation, axoneme disorganization, and mitochondria embedded in residual cytoplasmic droplets. Despite a fertilization rate of 83.3% through ICSI, there was no successful pregnancy due to poor embryo quality.Our findings suggest a link between the identified CFAP61 variant and MMAF, indicating potential disruption in radial spokes' assembly or function crucial for normal ciliary motility. Furthermore, nearly half of the observed sperm heads displayed chromatin condensation defects, possibly contributing to the low blastulation rate. This case underscores the significance of genetic counseling and testing, particularly for couples dealing with infertility and MMAF. Early identification of such genetic variants can guide appropriate interventions and improve reproductive outcomes.
Keyphrases
- genome wide
- copy number
- electron microscopy
- gene expression
- dna damage
- pregnancy outcomes
- single cell
- case report
- transcription factor
- physical activity
- dna methylation
- preterm birth
- type diabetes
- hepatitis c virus
- staphylococcus aureus
- risk assessment
- pregnant women
- reactive oxygen species
- weight loss
- oxidative stress
- quality improvement
- atomic force microscopy
- hiv infected
- mass spectrometry
- binding protein
- high resolution