Vourekas Anastassios, Zheng Ke, Fu Qi, Maragkakis Manolis, Alexiou Panagiotis, Ma Jing, Pillai Ramesh S, Mourelatos Zissimos, Wang P Jeremy
Department of Pathology and Laboratory Medicine, Division of Neuropathology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA;
State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing 210029, China;
Genes Dev. 2015 Mar 15;29(6):617-29. doi: 10.1101/gad.254631.114. Epub 2015 Mar 11.
Piwi-piRNA (Piwi-interacting RNA) ribonucleoproteins (piRNPs) enforce retrotransposon silencing, a function critical for preserving the genome integrity of germ cells. The molecular functions of most of the factors that have been genetically implicated in primary piRNA biogenesis are still elusive. Here we show that MOV10L1 exhibits 5'-to-3' directional RNA-unwinding activity in vitro and that a point mutation that abolishes this activity causes a failure in primary piRNA biogenesis in vivo. We demonstrate that MOV10L1 selectively binds piRNA precursor transcripts and is essential for the generation of intermediate piRNA processing fragments that are subsequently loaded to Piwi proteins. Multiple analyses suggest an intimate coupling of piRNA precursor processing with elements of local secondary structures such as G quadruplexes. Our results support a model in which MOV10L1 RNA helicase activity promotes unwinding and funneling of the single-stranded piRNA precursor transcripts to the endonuclease that catalyzes the first cleavage step of piRNA processing.
Piwi与piRNA(Piwi相互作用RNA)核糖核蛋白(piRNP)可实现逆转座子沉默,这一功能对于维持生殖细胞的基因组完整性至关重要。大多数在初级piRNA生物合成中具有遗传学关联的因子的分子功能仍不清楚。在此,我们表明MOV10L1在体外表现出5'至3'方向的RNA解旋活性,并且消除该活性的点突变会导致体内初级piRNA生物合成失败。我们证明MOV10L1选择性结合piRNA前体转录本,并且对于随后加载到Piwi蛋白上的中间piRNA加工片段的产生至关重要。多项分析表明piRNA前体加工与局部二级结构元件(如G-四链体)密切相关。我们的结果支持一种模型,即MOV10L1 RNA解旋酶活性促进单链piRNA前体转录本的解旋并将其导向催化piRNA加工第一步切割的核酸内切酶。