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Homozygous mutations in DZIP1 can induce asthenoteratospermia with severe MMAF
Mingrong Lv1,2,3, Wangjie Liu4,5,6, Wangfei Chi7
1Reproductive Medicine Center, Department of Obstetrics and Gynecology, The First Affiliated Hospital of Anhui Medical University, Hefei, China.
Background:
Asthenoteratospermia, one of the most common causes for male infertility, often presents with defective sperm heads and/or flagella. Multiple morphological abnormalities of the sperm flagella (MMAF) is one of the common clinical manifestations of asthenoteratospermia. Variants in several genes including DNAH1, CEP135, CATSPER2 and SUN5 are involved in the genetic pathogenesis of asthenoteratospermia. However, more than half of the asthenoteratospermia cases cannot be explained by the known pathogenic genes.
Methods And Results:
Two asthenoteratospermia-affected men with severe MMAF (absent flagella in >90% spermatozoa) from consanguineous families were subjected to whole-exome sequencing. The first proband had a homozygous missense mutation c.188G>A (p.Arg63Gln) of DZIP1 and the second proband had a homozygous stop-gain mutation c.690T>G (p.Tyr230*). Both of the mutations were neither detected in the human population genome data (1000 Genomes Project, Exome Aggregation Consortium) nor in our own data of a cohort of 875 Han Chinese control populations. DZIP1 encodes a DAZ (a protein deleted in azoospermia) interacting protein, which was associated with centrosomes in mammalian cells. Immunofluorescence staining of the centriolar protein Centrin1 indicated that the spermatozoa of the proband presented with abnormal centrosomes, including no concentrated centriolar dot or more than two centriolar dots. HEK293T cells transfected with two DZIP1-mutated constructs showed reduced DZIP1 level or truncated DZIP1. The Dzip1-knockout mice, generated by the CRSIPR-Cas9, revealed consistent phenotypes of severe MMAF.
Conclusion:
Our study strongly suggests that homozygous DZIP1 mutations can induce asthenoteratospermia with severe MMAF. The deficiency of DZIP1 induces sperm centrioles dysfunction and causes the absence of flagella.
Insights
Genetic mutations in the DZIP1 gene are a newly identified cause of asthenoteratospermia, a condition leading to male infertility. These DZIP1 mutations result in severe multiple morphological abnormalities of the sperm flagella (MMAF) due to sperm centriole dysfunction.
Area of Science:
- Genetics
- Reproductive Biology
- Cell Biology
Background:
- Asthenoteratospermia is a common cause of male infertility, characterized by defective sperm.
- Multiple morphological abnormalities of the sperm flagella (MMAF) is a frequent manifestation.
- Known genetic factors explain less than half of asthenoteratospermia cases.
Purpose of the Study:
- To identify novel genetic causes of asthenoteratospermia with severe MMAF.
- To investigate the role of DZIP1 in sperm flagella formation and male fertility.
Main Methods:
- Whole-exome sequencing in two affected individuals from consanguineous families.
- Analysis of DZIP1 mutations in population databases and controls.
- Immunofluorescence staining of sperm centrioles.
- Cellular assays with DZIP1 mutants.
- Generation and analysis of Dzip1-knockout mice.
Main Results:
- Identified homozygous mutations in DZIP1 in two patients with severe MMAF.
- DZIP1 mutations were absent in population and control cohorts.
- DZIP1 mutations led to abnormal sperm centrosomes and centrioles.
- Dzip1-knockout mice exhibited phenotypes consistent with severe MMAF.
Conclusions:
- Homozygous DZIP1 mutations are a cause of asthenoteratospermia with severe MMAF.
- DZIP1 deficiency impairs sperm centriole function, leading to absent flagella.
- This finding expands the genetic landscape of male infertility.
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