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Updated: Feb 12, 2026

Ex vivo Mimicry of Normal and Abnormal Human Hematopoiesis
Published on: April 10, 2012
Absence of CFAP69 Causes Male Infertility due to Multiple Morphological Abnormalities of the Flagella in Human and
Frederick N Dong1, Amir Amiri-Yekta2, Guillaume Martinez3
1Department of Biology, Johns Hopkins University, Baltimore, MD 21218, USA.
Abstract:
The multiple morphological abnormalities of the flagella (MMAF) phenotype is among the most severe forms of sperm defects responsible for male infertility. The phenotype is characterized by the presence in the ejaculate of immotile spermatozoa with severe flagellar abnormalities including flagella being short, coiled, absent, and of irregular caliber. Recent studies have demonstrated that MMAF is genetically heterogeneous, and genes thus far associated with MMAF account for only one-third of cases. Here we report the identification of homozygous truncating mutations (one stop-gain and one splicing variant) in CFAP69 of two unrelated individuals by whole-exome sequencing of a cohort of 78 infertile men with MMAF. CFAP69 encodes an evolutionarily conserved protein found at high levels in the testis. Immunostaining experiments in sperm from fertile control individuals showed that CFAP69 localized to the midpiece of the flagellum, and the absence of CFAP69 was confirmed in both individuals carrying CFPA69 mutations. Additionally, we found that sperm from a Cfap69 knockout mouse model recapitulated the MMAF phenotype. Ultrastructural analysis of testicular sperm from the knockout mice showed severe disruption of flagellum structure, but histological analysis of testes from these mice revealed the presence of all stages of the seminiferous epithelium, indicating that the overall progression of spermatogenesis is preserved and that the sperm defects likely arise during spermiogenesis. Together, our data indicate that CFAP69 is necessary for flagellum assembly/stability and that in both humans and mice, biallelic truncating mutations in CFAP69 cause autosomal-recessive MMAF and primary male infertility.
Insights
Mutations in CFAP69 cause severe sperm flagellar defects, leading to male infertility. This study identifies CFAP69 as crucial for sperm structure and function, explaining a significant portion of multiple morphological abnormalities of the flagella (MMAF) cases.
Area of Science:
- Human Genetics
- Reproductive Biology
- Sperm Motility Disorders
Background:
- Multiple Morphological Abnormalities of the Flagella (MMAF) is a severe cause of male infertility.
- Genetic factors underlying MMAF are largely unknown, with identified genes explaining only one-third of cases.
Purpose of the Study:
- To identify novel genetic causes of MMAF.
- To investigate the role of CFAP69 in sperm flagellum formation and male fertility.
Main Methods:
- Whole-exome sequencing of 78 infertile men with MMAF.
- Identification and characterization of CFAP69 mutations.
- Immunostaining of human sperm.
- Analysis of a Cfap69 knockout mouse model.
Main Results:
- Two unrelated individuals with MMAF harbored homozygous truncating mutations in CFAP69.
- CFAP69 protein localizes to the sperm flagellum midpiece.
- Cfap69 knockout mice exhibit the MMAF phenotype with severe flagellar defects.
- Spermatogenesis is preserved in knockout mice, indicating defects arise during spermiogenesis.
Conclusions:
- CFAP69 is essential for sperm flagellum assembly and stability.
- Biallelic mutations in CFAP69 cause autosomal-recessive MMAF and primary male infertility in humans and mice.
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