PNLDC1 is essential for piRNA 3′ end trimming and transposon silencing during spermatogenesis in mice

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作者
Deqiang Ding
Jiali Liu
Kunzhe Dong
Uros Midic
Rex A. Hess
Huirong Xie
Elena Y. Demireva
Chen Chen
机构
[1] Michigan State University,Department of Animal Science
[2] China Agricultural University,State Key Laboratory of Agrobiotechnology, College of Biological Sciences
[3] Avian Disease and Oncology Laboratory,USDA, Agricultural Research Service
[4] University of Illinois,Department of Comparative Biosciences
[5] Michigan State University,Transgenic and Genome Editing Facility
[6] Michigan State University,Reproductive and Developmental Sciences Program
[7] Michigan State University,Department of Obstetrics, Gynecology and Reproductive Biology
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Piwi-interacting RNAs are small regulatory RNAs with key roles in transposon silencing and regulation of gametogenesis. The production of mature piwi-interacting RNAs requires a critical step of trimming piwi-interacting RNA intermediates to achieve optimally sized piwi-interacting RNAs. The poly(A)-specific ribonuclease family deadenylase PNLDC1 is implicated in piwi-interacting RNA trimming in silkworms. The physiological function of PNLDC1 in mammals remains unknown. Using Pnldc1-deficient mice, here we show that PNLDC1 is required for piwi-interacting RNA biogenesis, transposon silencing, and spermatogenesis. Pnldc1 mutation in mice inhibits piwi-interacting RNA trimming and causes accumulation of untrimmed piwi-interacting RNA intermediates with 3′ end extension, leading to severe reduction of mature piwi-interacting RNAs in the testis. Pnldc1 mutant mice exhibit disrupted LINE1 retrotransposon silencing and defect in spermiogenesis. Together, these results define PNLDC1 as a mammalian piwi-interacting RNA biogenesis factor that protects the germline genome and ensures normal sperm production in mice.
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