Dennis Cynthia, Brasset Emilie, Vaury Chantal
GReD, Université Clermont Auvergne, CNRS, INSERM, Faculté de Médecine, 63000 Clermont-Ferrand, France.
Mob DNA. 2019 Jul 6;10:28. doi: 10.1186/s13100-019-0170-7. eCollection 2019.
PIWI-interacting RNAs (piRNAs) are the effectors of transposable element silencing in the reproductive apparatus. In ovarian somatic cells, piRNAs arise from long RNA precursors presumably processed within cytoplasmic Yb-bodies.
Here we show that the nucleo-cytoplasmic traffic of piRNA precursors encoded by the locus is subjected to a spatio-temporal regulation. Precursor RNAs first gather in a single nuclear focus, Dot COM, close to the nuclear periphery, and transit through the membrane before being delivered to the cytoplasmic Yb-bodies. Early in oogenesis, transcripts are rapidly transferred to the cytoplasm making their initial nuclear gathering in Dot COM too transient to be visualized. As oogenesis proceeds, the cytoplasmic delivery steadily decreases concomitantly with the decrease in the protein levels of Armi and Yb, two components of the Yb-bodies. Both events lead to a reduction of Yb-body assembly in late stages of oogenesis, which likely results in a drop in piRNA production.
Our findings show a spatio-temporal regulation of the piRNA biogenesis in the follicle cells of ovaries, that involves coordinated control of both piRNA precursors and components of the piRNA processing machinery. This newly unveiled regulation establishes another level of complexity in the production of piRNAs and suggests a stage-dependent involvement of the piRNA biogenesis in the mechanism of transposable elements silencing along oogenesis.
PIWI相互作用RNA(piRNA)是生殖器官中转座元件沉默的效应分子。在卵巢体细胞中,piRNA源自可能在细胞质Yb小体中加工的长RNA前体。
我们在此表明,由该基因座编码的piRNA前体的核质运输受到时空调节。前体RNA首先聚集在靠近核周的单个核焦点Dot COM中,并在被递送至细胞质Yb小体之前穿过膜。在卵子发生早期,转录本迅速转移到细胞质中,使得它们在Dot COM中的初始核聚集过于短暂而无法可视化。随着卵子发生的进行,细胞质递送稳步下降,同时Yb小体的两个组成部分Armi和Yb的蛋白质水平也下降。这两个事件导致卵子发生后期Yb小体组装减少,这可能导致piRNA产生下降。
我们的研究结果显示了卵巢卵泡细胞中piRNA生物发生的时空调节,这涉及对piRNA前体和piRNA加工机制组成部分的协调控制。这种新揭示的调节在piRNA的产生中建立了另一个复杂层面,并表明piRNA生物发生在卵子发生过程中转座元件沉默机制中存在阶段依赖性参与。