Trigg Natalie A, Lee Grace S, Leach Alexis G, Conine Colin C
Division of Neonatology, Children's Hospital of Philadelphia. Philadelphia, PA, USA.
Departments of Genetics and Pediatrics - Penn Epigenetics Institute, Institute of Regenerative Medicine, and Center for Reproduction and Women's Health, University of Pennsylvania Perelman School of Medicine. Philadelphia, PA, USA.
bioRxiv. 2025 Aug 22:2025.08.18.670952. doi: 10.1101/2025.08.18.670952.
The epididymis plays a critical role in sperm maturation, including remodeling the sperm RNA payload. While small RNAs have been extensively studied in this context, the epididymal contribution to larger sperm RNAs, such as mRNAs, remains underexplored. mRNAs were among the first RNA species identified in sperm, yet their functional relevance has remained elusive, largely due to the translational quiescence of mature spermatozoa and the hypothesis that these RNAs are residual by-products of spermatogenesis. Yet, mRNAs carried by sperm have been detected in the zygote, indicating they could play a role beyond fertilization. However, if the soma, the epididymis, actively contributes mRNAs to sperm as it does small RNAs, has not been experimentally assessed. To investigate this, here, we provide a comprehensive analysis of the mRNA landscape of mouse sperm, epithelial cells and extracellular vesicles (EVs) isolated from the proximal (caput) and distal (cauda) epididymis. Through this analysis and sperm-EV co-incubation experiments we demonstrate the transfer of mRNAs from epididymal EVs to sperm. Further, through sperm RNA microinjection into zygotes we uncover gene regulation in the early embryo driven by the introduction of sperm RNAs, specific to large RNA species. These findings ultimately reveal the dynamic mRNA profile of sperm that is delivered to the egg and demonstrate that RNA species beyond small RNAs are capable of influencing preimplantation embryo gene expression.
附睾在精子成熟过程中起着关键作用,包括重塑精子的RNA负载。虽然小RNA在这方面已得到广泛研究,但附睾对较大的精子RNA(如mRNA)的贡献仍未得到充分探索。mRNA是在精子中最早被鉴定出的RNA种类之一,但其功能相关性仍然难以捉摸,这主要是由于成熟精子的翻译静止状态以及这些RNA是精子发生过程中残留副产物的假说。然而,已在受精卵中检测到精子携带的mRNA,这表明它们在受精之外可能发挥作用。然而,体细胞附睾是否像对小RNA那样积极地为精子提供mRNA,尚未经过实验评估。为了研究这一点,我们在此对从小鼠附睾近端(头部)和远端(尾部)分离出的精子、上皮细胞和细胞外囊泡(EV)的mRNA图谱进行了全面分析。通过这项分析和精子-EV共孵育实验,我们证明了附睾EV中的mRNA向精子的转移。此外,通过将精子RNA显微注射到受精卵中,我们发现了由精子RNA的引入驱动的早期胚胎中的基因调控,这一调控特定于大RNA种类。这些发现最终揭示了传递到卵子的精子动态mRNA图谱,并证明除小RNA之外的RNA种类能够影响植入前胚胎的基因表达。