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A Seminiferous Tubule Squash Technique for the Cytological Analysis of Spermatogenesis Using the Mouse Model
Published on: February 6, 2018
Deficiency of the multi-copy mouse Y gene Sly causes sperm DNA damage and abnormal chromatin packaging
Jonathan M Riel1, Yasuhiro Yamauchi, Atsushi Sugawara
1Institute for Biogenesis Research, John A. Burns School of Medicine, University of Hawaii, Honolulu HI 96822, USA.
Abstract:
In mouse and man Y chromosome deletions are frequently associated with spermatogenic defects. Mice with extensive deletions of non-pairing Y chromosome long arm (NPYq) are infertile and produce sperm with grossly misshapen heads, abnormal chromatin packaging and DNA damage. The NPYq-encoded multi-copy gene Sly controls the expression of sex chromosome genes after meiosis and Sly deficiency results in a remarkable upregulation of sex chromosome genes. Sly deficiency has been shown to be the underlying cause of the sperm head anomalies and infertility associated with NPYq gene loss, but it was not known whether it recapitulates sperm DNA damage phenotype. We produced and examined mice with transgenically (RNAi) silenced Sly and demonstrated that these mice have increased incidence of sperm with DNA damage and poorly condensed and insufficiently protaminated chromatin. We also investigated the contribution of each of the two Sly-encoded transcript variants and noted that the phenotype was only observed when both variants were knocked down, and that the phenotype was intermediate in severity compared with mice with severe NPYq deficiency. Our data demonstrate that Sly deficiency is responsible for the sperm DNA damage/chromatin packaging defects observed in mice with NPYq deletions and point to SLY proteins involvement in chromatin reprogramming during spermiogenesis, probably through their effect on the post-meiotic expression of spermiogenic genes. Considering the importance of the sperm epigenome for embryonic and fetal development and the possibility of its inter-generational transmission, our results are important for future investigations of the molecular mechanisms of this biologically and clinically important process.
Insights
Sly gene deficiency in mice causes sperm DNA damage and chromatin defects, mirroring Y chromosome deletions. This highlights SLY proteins
Area of Science:
- Reproductive Biology
- Genetics
- Spermatogenesis
Background:
- Y chromosome deletions are linked to male infertility and sperm defects in mice and humans.
- The non-pairing Y chromosome long arm (NPYq) deletions cause infertility with abnormal sperm head morphology, chromatin, and DNA damage.
- The NPYq-encoded Sly gene regulates post-meiotic sex chromosome gene expression; its deficiency upregulates these genes.
Purpose of the Study:
- To determine if Sly deficiency causes sperm DNA damage and chromatin defects.
- To investigate the role of Sly transcript variants in these defects.
Main Methods:
- Generation of mice with transgenically silenced Sly using RNA interference (RNAi).
- Examination of sperm DNA damage, chromatin condensation, and protamination in Sly-silenced mice.
- Analysis of the impact of individual Sly transcript variant knockdown.
Main Results:
- Sly-silenced mice exhibited increased sperm DNA damage and poorly condensed, insufficiently protaminated chromatin.
- The phenotype was observed only when both Sly transcript variants were knocked down.
- The severity of defects in Sly-silenced mice was intermediate compared to mice with severe NPYq deletions.
Conclusions:
- Sly deficiency is responsible for sperm DNA damage and chromatin packaging defects in NPYq-deleted mice.
- SLY proteins are involved in chromatin reprogramming during spermiogenesis via post-meiotic gene expression.
- Findings are crucial for understanding sperm epigenome regulation and its implications for development and inheritance.
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