Zhu Xiaobin, Zhi Erlei, Li Zheng
Department of UrologySchool of Medicine, Ren Ji Hospital, Shanghai Jiao Tong University, 1630 Dongfang Road, Shanghai 200127, China.
Department of UrologySchool of Medicine, Ren Ji Hospital, Shanghai Jiao Tong University, 1630 Dongfang Road, Shanghai 200127, China
Reproduction. 2015 May;149(5):R229-35. doi: 10.1530/REP-14-0569. Epub 2015 Feb 9.
Piwi-interacting RNAs (piRNAs) are a broad group of non-coding small RNAs with important biological functions in germline cells. It is well known that piRNAs can maintain genome integrity via silencing retrotransposons. Previous studies on the animal models harboring gene deletions have shown that the genes involved in piRNA biogenesis and their defective expression can result in the spermatogenic dysfunction. In the past decade, significant progress has been achieved for piRNAs and their roles in male germ cells. This review addresses the advances on piRNAs and piRNA biogenesis-associated genes, with a particular focus on the Moloney leukemia virus 10-like 1 (MOV10L1) gene, whose role in primary piRNA processing and in the 'ping-pong' cycle during secondary piRNA processing has been illustrated. The biological characteristics of piRNA has been summarized, and emphasis was laid on the roles of MOV10L1 in the mediation of piRNA biogenesis and retrotransposons silencing by DNA methylation. Furthermore, the association between MOV10L1 gene polymorphisms and complete maturation arrest in men has been discussed. Hence, thorough literature review was conducted in order to obtain a greater understanding of the function of MOV10L1 and its mechanisms underlying spermatogenesis in mice and humans.
Piwi相互作用RNA(piRNA)是一类广泛存在的非编码小RNA,在生殖细胞中具有重要的生物学功能。众所周知,piRNA可通过沉默逆转录转座子来维持基因组完整性。以往对携带基因缺失的动物模型的研究表明,参与piRNA生物合成的基因及其缺陷表达可导致生精功能障碍。在过去十年中,piRNA及其在雄性生殖细胞中的作用取得了显著进展。本综述阐述了piRNA及其与piRNA生物合成相关基因的研究进展,特别关注莫洛尼白血病病毒10样1(MOV10L1)基因,该基因在初级piRNA加工以及次级piRNA加工过程中的“乒乓”循环中的作用已得到阐明。总结了piRNA的生物学特性,并着重介绍了MOV10L1在介导piRNA生物合成以及通过DNA甲基化沉默逆转录转座子方面的作用。此外,还讨论了MOV10L1基因多态性与男性完全成熟停滞之间的关联。因此,进行了全面的文献综述,以便更深入地了解MOV10L1的功能及其在小鼠和人类精子发生中的潜在机制。