Yang Fu, Xi Rongwen
National Institute of Biological Sciences, No. 7 Science Park Road, Zhongguancun Life Science Park, Beijing, 102206, China.
College of Life Science, Beijing Normal University, Beijing, 100875, China.
Cell Mol Life Sci. 2017 Feb;74(3):435-448. doi: 10.1007/s00018-016-2353-4. Epub 2016 Sep 6.
Transposable elements or transposons are DNA pieces that can move around within the genome and are, therefore, potential threat to genome stability and faithful transmission of the genetic information in the germline. Accordingly, self-defense mechanisms have evolved in the metazoan germline to silence transposons, and the primary mechanism requires the germline-specific non-coding small RNAs, named Piwi-interacting RNA (piRNAs), which are in complex with Argonaute family of PIWI proteins (the piRNA-RISC complexes), to silence transposons. piRNA-mediated transposon silencing occurs at both transcriptional and post-transcriptional levels. With the advantages of genetic manipulation and advances of sequencing technology, much progress has been made on the molecular mechanisms of piRNA-mediated transposon silencing in Drosophila melanogaster, which will be the focus of this review. Because piRNA-mediated transposon silencing is evolutionarily conserved in metazoan, model organisms, such as Drosophila, will continue to be served as pioneer systems towards the complete understanding of transposon silencing in the metazoan germline.
转座元件或转座子是能够在基因组内移动的DNA片段,因此对基因组稳定性以及种系中遗传信息的忠实传递构成潜在威胁。相应地,后生动物种系中已进化出自我防御机制来沉默转座子,其主要机制需要种系特异性的非编码小RNA,即与PIWI蛋白的Argonaute家族形成复合物的Piwi相互作用RNA(piRNA)(piRNA-RISC复合物)来沉默转座子。piRNA介导的转座子沉默发生在转录和转录后水平。凭借基因操作的优势和测序技术的进步,在黑腹果蝇中piRNA介导的转座子沉默的分子机制方面已经取得了很大进展,这将是本综述的重点。由于piRNA介导的转座子沉默在后生动物中具有进化保守性,像果蝇这样的模式生物将继续作为先锋系统,以全面了解后生动物种系中的转座子沉默。