Priority Research Centre for Reproduction, School of Environmental and Life Sciences, Discipline of Biological Sciences, University of Newcastle, Callaghan, New South Wales 2308, Australia.
School of Biological Sciences, University of Auckland, Auckland 1142, New Zealand.
Sci Rep. 2016 Aug 23;6:31794. doi: 10.1038/srep31794.
Recent evidence has shown that the sperm epigenome 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 that such exchange is communicated to maturing spermatozoa via the transfer of small non-protein-coding RNAs (sRNAs) in a mechanism mediated by epididymosomes; small membrane bound vesicles released by the soma of the male reproductive tract (epididymis). Here we confirm that mouse epididymosomes encapsulate an impressive cargo of >350 microRNAs (miRNAs), a developmentally important sRNA class, the majority (~60%) of which are also represented by the miRNA signature of spermatozoa. This includes >50 miRNAs that were found exclusively in epididymal sperm and epididymosomes, but not in the surrounding soma. We also documented substantial changes in the epididymosome miRNA cargo, including significant fold changes in almost half of the miRNAs along the length of the epididymis. Finally, we provide the first direct evidence for the transfer of several prominent miRNA species between mouse epididymosomes and spermatozoa to afford novel insight into a mechanism of intercellular communication by which the sRNA payload of sperm can be selectively modified during their post-testicular maturation.
最近的证据表明,精子表观基因组容易受到各种父系环境暴露引起的动态修饰的影响,这种遗传可以作为代际遗传的重要决定因素。有人假设,这种交换是通过小非蛋白编码 RNA(sRNA)在附睾小体介导的机制中传递给成熟的精子,附睾小体是雄性生殖道(附睾)体细胞释放的小膜结合囊泡。在这里,我们证实小鼠附睾小体封装了超过 350 种 microRNAs(miRNAs)的令人印象深刻的货物,miRNAs 是一类重要的发育 sRNA,其中约 60%的 miRNA 也存在于精子中。其中包括 50 多种仅存在于附睾精子和附睾小体中,而不存在于周围体细胞中的 miRNA。我们还记录了附睾小体 miRNA 货物的大量变化,包括在附睾的整个长度上,近一半的 miRNA 都有显著的倍数变化。最后,我们提供了第一个直接证据,证明几种主要的 miRNA 物种在小鼠附睾小体和精子之间转移,为精子中 sRNA 有效负载在其睾丸后成熟过程中选择性修饰的细胞间通讯机制提供了新的见解。