Li Chengjian, Vagin Vasily V, Lee Soohyun, Xu Jia, Ma Shengmei, Xi Hualin, Seitz Hervé, Horwich Michael D, Syrzycka Monika, Honda Barry M, Kittler Ellen L W, Zapp Maria L, Klattenhoff Carla, Schulz Nadine, Theurkauf William E, Weng Zhiping, Zamore Phillip D
Department of Biochemistry and Molecular Pharmacology and Howard Hughes Medical Institute, University of Massachusetts Medical School, Worcester, 01605, USA.
Cell. 2009 May 1;137(3):509-21. doi: 10.1016/j.cell.2009.04.027. Epub 2009 Apr 23.
Piwi-interacting RNAs (piRNAs) silence transposons in animal germ cells. piRNAs are thought to derive from long transcripts spanning transposon-rich genomic loci and to direct an autoamplification loop in which an antisense piRNA, bound to Aubergine or Piwi protein, triggers production of a sense piRNA bound to the PIWI protein Argonaute3 (Ago3). In turn, the new piRNA is envisioned to produce a second antisense piRNA. Here, we describe strong loss-of-function mutations in ago3, allowing a direct genetic test of this model. We find that Ago3 acts to amplify piRNA pools and to enforce on them an antisense bias, increasing the number of piRNAs that can act to silence transposons. We also detect a second, Ago3-independent piRNA pathway centered on Piwi. Transposons targeted by this second pathway often reside in the flamenco locus, which is expressed in somatic ovarian follicle cells, suggesting a role for piRNAs beyond the germline.
Piwi相互作用RNA(piRNA)在动物生殖细胞中使转座子沉默。piRNA被认为来源于跨越富含转座子的基因组位点的长转录本,并指导一个自我扩增环,其中与茄子蛋白或Piwi蛋白结合的反义piRNA触发与PIWI蛋白AGO3(Ago3)结合的正义piRNA的产生。反过来,新的piRNA被设想产生第二个反义piRNA。在这里,我们描述了ago3中强烈的功能丧失突变,从而可以对该模型进行直接的遗传学测试。我们发现Ago3起到扩增piRNA库并在其上施加反义偏向的作用,增加了可用于沉默转座子的piRNA数量。我们还检测到了第二条以Piwi为中心的、不依赖Ago3的piRNA途径。这条第二条途径靶向的转座子通常位于弗拉门戈基因座中,该基因座在卵巢体细胞卵泡细胞中表达,这表明piRNA在种系之外也发挥作用。