Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Dr Bohrgasse 3, 1030 Vienna, Austria.
Mol Cell. 2013 Jun 6;50(5):762-77. doi: 10.1016/j.molcel.2013.04.031. Epub 2013 May 9.
The piRNA (PIWI-interacting RNA) pathway is a small RNA silencing system that acts in animal gonads and protects the genome against the deleterious influence of transposons. A major bottleneck in the field is the lack of comprehensive knowledge of the factors and molecular processes that constitute this pathway. We conducted an RNAi screen in Drosophila and identified ~50 genes that strongly impact the ovarian somatic piRNA pathway. Many identified genes fall into functional categories that indicate essential roles for mitochondrial metabolism, RNA export, the nuclear pore, transcription elongation, and chromatin regulation in the pathway. Follow-up studies on two factors demonstrate that components acting at distinct hierarchical levels of the pathway were identified. Finally, we define CG2183/Gasz as an essential primary piRNA biogenesis factor in somatic and germline cells. Based on the similarities between insect and vertebrate piRNA pathways, our results have far-reaching implications for the understanding of this conserved genome defense system.
piRNA(PIWI-interacting RNA)通路是一种小 RNA 沉默系统,在动物性腺中起作用,可保护基因组免受转座子的有害影响。该领域的一个主要瓶颈是缺乏对构成该通路的因素和分子过程的全面了解。我们在果蝇中进行了 RNAi 筛选,鉴定出约 50 个对卵巢体 piRNA 通路有重大影响的基因。许多鉴定出的基因属于功能类别,表明线粒体代谢、RNA 输出、核孔、转录延伸和染色质调节在该通路中具有重要作用。对两个因素的后续研究表明,在通路的不同层次结构水平上起作用的成分被鉴定出来。最后,我们将 CG2183/Gasz 定义为体细和生殖细胞中必需的初级 piRNA 生物发生因子。基于昆虫和脊椎动物 piRNA 通路之间的相似性,我们的研究结果对理解这个保守的基因组防御系统具有深远的意义。