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Determination of Reproductive Competence by Confirming Pubertal Onset and Performing a Fertility Assay in Mice and Rats
Published on: October 13, 2018
Subfertility in young male mice mutant for chromatin remodeller CECR2
Kacie A Norton1, Ross Humphreys1, Chelsey Weatherill1
1Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.
Abstract:
Defects in spermatogenesis are an important cause of male infertility. Multiple aspects of spermatogenesis are controlled by chromatin remodellers, including regulating transcription. We previously described mutations in chromatin remodelling gene Cecr2 that resulted in the lethal neural tube defect exencephaly in most mutant mice and subfertility in mice that were non-penetrant for exencephaly. Here, we show that the severity of male subfertility is dependent on age. Cecr2GT/Del males contain two mutant alleles, one of which is hypomorphic and therefore produces a small amount of protein. These males sire the fewest pups just after sexual maturity (88% fewer than Cecr2+/+ at P42-60) but improve with age (49% fewer than Cecr2+/+ at P81-100), although never completely recovering to Cecr2+/+(wild type) levels. When young, they also have defects in testis histology, in vivo fertilization frequency, sperm number and motility, and testis weight that show similar improvement with age. Immunostaining of staged seminiferous tubules showed CECR2 in type A, intermediate and B spermatogonia, and less in preleptotene and leptotene spermatocytes. Histological defects were first apparent in Cecr2GT/Del testes at P24, and RNA-seq analysis revealed 387 differentially expressed genes. This included 66 genes on the X chromosome (almost double the number on any other chromosome), all more highly expressed in Cecr2GT/Del testes. This inappropriate expression of X chromosome genes could be caused by a failure of effective meiotic sex chromosome inactivation. We identify several abnormally expressed genes that may contribute to defects in spermatogenesis at P24. Our results support a role for Cecr2 in juvenile spermatogenesis.
Insights
Mutations in the Cecr2 gene cause male subfertility due to defects in spermatogenesis. Fertility improves with age, but abnormal X chromosome gene expression persists, impacting sperm production.
Area of Science:
- Reproductive Biology
- Genetics
- Developmental Biology
Background:
- Spermatogenesis defects are a key cause of male infertility.
- Chromatin remodelers, like CECR2, regulate gene transcription during spermatogenesis.
- Previous studies linked Cecr2 mutations to exencephaly and subfertility.
Purpose of the Study:
- To investigate the age-dependent effects of Cecr2 mutations on male fertility.
- To identify molecular mechanisms underlying Cecr2-associated subfertility.
- To explore the role of CECR2 in spermatogonial development and gene regulation.
Main Methods:
- Analysis of Cecr2GT/Del mutant mice across different age groups.
- Assessment of reproductive parameters: pup counts, testis histology, sperm analysis, and fertilization rates.
- Immunostaining for CECR2 localization in seminiferous tubules.
- RNA-sequencing (RNA-seq) to analyze gene expression profiles in mutant testes.
Main Results:
- Cecr2GT/Del males exhibit age-dependent improvement in fertility, with reduced pup counts and sperm parameters in younger males.
- Histological defects and impaired sperm quality were observed in young Cecr2GT/Del testes.
- RNA-seq revealed significant upregulation of X chromosome genes in Cecr2GT/Del testes, suggesting a failure in meiotic sex chromosome inactivation.
- CECR2 is localized in spermatogonia, indicating a role in early germ cell development.
Conclusions:
- CECR2 plays a crucial role in juvenile spermatogenesis and maintaining normal gene expression patterns.
- Dysregulation of X chromosome gene expression due to Cecr2 deficiency may contribute to male subfertility.
- Age-related compensatory mechanisms partially restore fertility, but underlying molecular defects persist.
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