Biology of Non-coding RNA group, Institute of Molecular Biology, Mainz, Germany.
International PhD Programme on Gene Regulation, Epigenetics and Genome Stability, Institute of Molecular Biology, Mainz, Germany.
Nat Cell Biol. 2022 Feb;24(2):217-229. doi: 10.1038/s41556-021-00827-2. Epub 2022 Feb 7.
Epigenetic inheritance describes the transmission of gene regulatory information across generations without altering DNA sequences, enabling offspring to adapt to environmental conditions. Small RNAs have been implicated in this, through both the oocyte and the sperm. However, as much of the cellular content is extruded during spermatogenesis, it is unclear whether cytoplasmic small RNAs can contribute to epigenetic inheritance through sperm. Here we identify a sperm-specific germ granule, termed the paternal epigenetic inheritance (PEI) granule, that mediates paternal epigenetic inheritance by retaining the cytoplasmic Argonaute protein WAGO-3 during spermatogenesis in Caenorhabditis elegans. We identify the PEI granule proteins PEI-1 and PEI-2, which have distinct functions in this process: granule formation, Argonaute selectivity and subcellular localization. We show that PEI granule segregation is coupled to the transport of sperm-specific secretory vesicles through PEI-2 in an S-palmitoylation-dependent manner. PEI-like proteins are found in humans, suggesting that the identified mechanism may be conserved.
表观遗传遗传描述了基因调控信息在代际间的传递,而不会改变 DNA 序列,使后代能够适应环境条件。小 RNA 也参与了这一过程,无论是在卵母细胞还是精子中。然而,由于在精子发生过程中有大量的细胞内容物被挤出,因此尚不清楚细胞质小 RNA 是否可以通过精子来促进表观遗传遗传。在这里,我们鉴定了一种精子特异性的生殖颗粒,称为父本表观遗传遗传 (PEI) 颗粒,它通过在秀丽隐杆线虫的精子发生过程中保留细胞质 Argonaute 蛋白 WAGO-3 来介导父本表观遗传遗传。我们鉴定了 PEI 颗粒蛋白 PEI-1 和 PEI-2,它们在这个过程中具有不同的功能:颗粒形成、Argonaute 选择性和亚细胞定位。我们表明,PEI 颗粒的分离与通过 S-棕榈酰化依赖方式运输精子特异性分泌小泡的过程相关联。在人类中发现了类似 PEI 的蛋白,这表明所鉴定的机制可能是保守的。