Department of Animal Biology, Center for Animal Transgenesis and Germ Cell Research, University of Pennsylvania School of Veterinary Medicine, Philadelphia, Pennsylvania, United States of America.
PLoS Genet. 2012;8(11):e1003038. doi: 10.1371/journal.pgen.1003038. Epub 2012 Nov 15.
Piwi-interacting RNAs are a diverse class of small non-coding RNAs implicated in the silencing of transposable elements and the safeguarding of genome integrity. In mammals, male germ cells express two genetically and developmentally distinct populations of piRNAs at the pre-pachytene and pachytene stages of meiosis, respectively. Pre-pachytene piRNAs are mostly derived from retrotransposons and required for their silencing. In contrast, pachytene piRNAs originate from ~3,000 genomic clusters, and their biogenesis and function remain enigmatic. Here, we report that conditional inactivation of the putative RNA helicase MOV10L1 in mouse spermatocytes produces a specific loss of pachytene piRNAs, significant accumulation of pachytene piRNA precursor transcripts, and unusual polar conglomeration of Piwi proteins with mitochondria. Pachytene piRNA-deficient spermatocytes progress through meiosis without derepression of LINE1 retrotransposons, but become arrested at the post-meiotic round spermatid stage with massive DNA damage. Our results demonstrate that MOV10L1 acts upstream of Piwi proteins in the primary processing of pachytene piRNAs and suggest that, distinct from pre-pachytene piRNAs, pachytene piRNAs fulfill a unique function in maintaining post-meiotic genome integrity.
Piwi 相互作用的 RNA 是一类多样化的小非编码 RNA,涉及转座元件的沉默和基因组完整性的保护。在哺乳动物中,雄性生殖细胞在减数分裂的前期和粗线期分别表达两种在遗传和发育上不同的 piRNA 群体。前期 piRNA 主要来源于逆转录转座子,对于它们的沉默是必需的。相比之下,粗线期 piRNA 起源于约 3000 个基因组簇,其生物发生和功能仍然是个谜。在这里,我们报告说,在小鼠精母细胞中条件性失活假定的 RNA 解旋酶 MOV10L1 会导致特异性丢失粗线期 piRNA,大量粗线期 piRNA 前体转录本的积累,以及 Piwi 蛋白与线粒体的异常极性聚集。缺乏粗线期 piRNA 的精母细胞可以通过减数分裂而不会解除 LINE1 逆转录转座子的沉默,但在减数后圆形精子细胞阶段停滞,伴随着大量的 DNA 损伤。我们的结果表明,MOV10L1 在粗线期 piRNA 的初级加工中在上游作用于 Piwi 蛋白,并表明与前期 piRNA 不同,粗线期 piRNA 在维持减数后基因组完整性方面具有独特的功能。