生物
精子细胞
细胞生物学
Piwi相互作用RNA
精子发生
信使核糖核酸
翻译(生物学)
转座因子
抄写(语言学)
遗传学
基因
突变体
语言学
哲学
核心
精子
作者
Peng Dai,Xin Wang,Lan‐Tao Gou,Zhitong Li,Ze Wen,Zonggui Chen,Min-Min Hua,Ai Zhong,Lingbo Wang,Haiyang Su,Huida Wan,Kun Qian,Lujian Liao,Jinsong Li,Bin Tian,Dangsheng Li,Xiang‐Dong Fu,Huijuan Shi,Yu Zhou,Mo‐Fang Liu
出处
期刊:Cell
[Cell Press]
日期:2019-12-01
卷期号:179 (7): 1566-1581.e16
被引量:187
标识
DOI:10.1016/j.cell.2019.11.022
摘要
Spermiogenesis is a highly orchestrated developmental process during which chromatin condensation decouples transcription from translation. Spermiogenic mRNAs are transcribed earlier and stored in a translationally inert state until needed for translation; however, it remains largely unclear how such repressed mRNAs become activated during spermiogenesis. We previously reported that the MIWI/piRNA machinery is responsible for mRNA elimination during late spermiogenesis in preparation for spermatozoa production. Here we unexpectedly discover that the same machinery is also responsible for activating translation of a subset of spermiogenic mRNAs to coordinate with morphological transformation into spermatozoa. Such action requires specific base-pairing interactions of piRNAs with target mRNAs in their 3' UTRs, which activates translation through coupling with cis-acting AU-rich elements to nucleate the formation of a MIWI/piRNA/eIF3f/HuR super-complex in a developmental stage-specific manner. These findings reveal a critical role of the piRNA system in translation activation, which we show is functionally required for spermatid development.
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