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A Seminiferous Tubule Squash Technique for the Cytological Analysis of Spermatogenesis Using the Mouse Model
Published on: February 6, 2018
SPACA4 regulates the structure and molecular basis of spermatid maturation and ultimately affects sperm quality in
Xu Chen1,2, Hai-Qian Wu1, Dan-Yang Wan1,3
1Department of Histology and Embryology, School of Basic Medical Sciences, State Key Laboratory of Reproductive Medicine and Offspring Health, Nanjing Medical University, Nanjing 211166, China.
Abstract:
Sperm quality is crucial for sperm function and can even affect embryo quality and offspring health. Spermatid maturation is extremely complex, as spermatids undergo morphological changes, laying the foundation for the execution of sperm function. The function of sperm acrosome-associated 4 (SPACA4) in spermatogenesis is not well known. The present study revealed that SPACA4 was specifically expressed in the acrosomes and cytoplasm of mouse spermatids. Spaca4 knockout mice demonstrated that the loss of SPACA4 led to male subfertility. The quality of mature sperm was abnormal in Spaca4 -/- mice, manifested by decreased motility and multiple deformities. Spaca4 -/- sperm exhibited irregular nuclear shapes, abnormal nuclei with vacuoles, missing or incompletely fused acrosomes, and multiple cross-sections enclosed in the same sperm cell membrane. Electron microscopy and molecular expression analyses of testicles revealed that the loss of SPACA4 affected the differentiation of the acrosome, acroplaxome, and manchette, resulting in abnormalities in nuclear elongation, chromatin condensation, and flagellar development. Interestingly, SPACA4 did not regulate spermiogenesis via the acetylcholine signaling pathway. Analysis of the differential protein expression profile revealed that the expression of 9 proteins was significantly decreased in Spaca4 -/- spermatids. A decreased protein, transformation-related protein 53 target 5 (TRP53TG5), was knocked down in spermatids and found that the phenotype was consistent with Spaca4 knockout mice. These results revealed that the absence of SPACA4 leads to abnormal spermatid maturation and affects sperm quality in mice. Abnormal sperm quality in Spaca4 -/- mice results in decreased sperm capacitation and a decreased acrosome response, ultimately affecting the fertility of male mice.
Insights
The absence of sperm acrosome-associated 4 (SPACA4) in mice causes male subfertility due to abnormal spermatid maturation and impaired sperm quality, affecting fertility.
Area of Science:
- Reproductive Biology
- Spermatogenesis Research
- Male Fertility Studies
Background:
- Sperm quality is vital for reproductive success and offspring health.
- Spermatid maturation is a complex process involving significant morphological changes.
- The specific role of sperm acrosome-associated 4 (SPACA4) in spermatogenesis remains largely unknown.
Purpose of the Study:
- To investigate the function of SPACA4 during spermatogenesis.
- To determine the impact of SPACA4 deficiency on sperm quality and male fertility in mice.
Main Methods:
- Generation and analysis of Spaca4 knockout mice.
- Sperm morphology and motility assessment using light and electron microscopy.
- Analysis of testicular gene and protein expression, including differential protein profiling.
Main Results:
- SPACA4 is specifically expressed in mouse spermatid acrosomes and cytoplasm.
- Spaca4 knockout mice exhibit male subfertility with significantly reduced sperm motility and increased morphological abnormalities.
- Loss of SPACA4 disrupts acrosome, acroplaxome, and manchette differentiation, impacting nuclear elongation, chromatin condensation, and flagellar development.
- Decreased expression of transformation-related protein 53 target 5 (TRP53TG5) was observed in Spaca4-/- spermatids, and its knockdown mimicked the knockout phenotype.
Conclusions:
- SPACA4 is essential for normal spermatid maturation and sperm quality in mice.
- SPACA4 deficiency leads to impaired sperm capacitation and acrosome response, ultimately reducing male fertility.
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