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Spermatozoa acquire fertilization potential during passage through a highly specialized region of the extra-testicular ductal system known as the epididymis. In the absence of de novo gene transcription or protein translation, this functional transformation is extrinsically driven via the exchange o...
ORGANISM(S): Mus musculus (Mouse) 
2022-11-21 | PXD028834 | Pride
Background: The epididymis has long been of interest owing to its role in promoting the functional maturation of the male germline. More recent evidence has also implicated the epididymis as an important sensory tissue responsible for remodeling of the sperm epigenome, both under physiological condi...
ORGANISM(S): Mus musculus (Mouse) 
2024-04-08 | PXD028789 | Pride
The aims of this study were to investigate the proteome of koala (Phascolarctos cinereus) spermatozoa and that of the prostatic bodies with which they form intimate contact at the moment of ejaculation. For this purpose, spermatozoa and prostatic bodies were obtained from four adult male koala by el...
ORGANISM(S): Phascolarctos cinereus (Koala) 
2021-08-23 | PXD024250 | Pride
In a reproductive strategy that is considered unique to the mammalian lineage, spermatozoa must undergo a series of physiological changes, termed capacitation, in the female reproductive tract prior to developing their capacity to fertilize an ovum. Here, we have employed a comparative proteomic str...
ORGANISM(S): Crocodylus Porosus (ncbitaxon:8502) 
2018-04-08 | MSV000082258 | MassIVE
Paternal exposure to a range of environmental and lifestyle factors elicits distinct changes to the sperm sncRNA profile; modifications that have significant post-fertilization consequences. Despite this knowledge, there remains limited mechanistic understanding of how paternal exposures effect the ...
ORGANISM(S): Mus musculus (Mouse) 
2021-10-07 | PXD022865 | Pride
Mouse Sperm Proteomic Profiling - University of Newcastle - Dr. Matt Dun
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2018-06-24 | MSV000082497 | MassIVE
Interest in the sperm epigenome continues to grow in view of the realization that it is vulnerable to dynamic modifications arising from a variety of paternal environment exposures and that this legacy can serve as an important determinant of intergenerational inheritance. It has been postulated tha...
ORGANISM(S): Mus musculus 
In recent years considerable effort has been devoted to understanding the epigenetic control of sperm development leading to an increased appreciation of the importance of RNA interference pathways, and in particular microRNAs (miRNAs), as key regulators of spermatogenesis and epididymal maturation....
ORGANISM(S): Mus musculus 
Paternal exposure to a range of environmental and lifestyle factors elicits distinct changes to the sperm sncRNA profile; modifications that have significant post-fertilization consequences. Despite this knowledge, there remains limited mechanistic understanding of how paternal exposures effect the ...
ORGANISM(S): Mus Musculus 
2021-10-08 | PXD022876 | panorama
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