Literature DB >> 22508728

The RDE-10/RDE-11 complex triggers RNAi-induced mRNA degradation by association with target mRNA in C. elegans.

Huan Yang1, Ying Zhang, Jim Vallandingham, Hua Li, Hau Li, Laurence Florens, Ho Yi Mak.   

Abstract

The molecular mechanisms for target mRNA degradation in Caenorhabditis elegans undergoing RNAi are not fully understood. Using a combination of genetic, proteomic, and biochemical approaches, we report a divergent RDE-10/RDE-11 complex that is required for RNAi in C. elegans. Genetic analysis indicates that the RDE-10/RDE-11 complex acts in parallel to nuclear RNAi. Association of the complex with target mRNA is dependent on RDE-1 but not RRF-1, suggesting that target mRNA recognition depends on primary but not secondary siRNA. Furthermore, RDE-11 is required for mRNA degradation subsequent to target engagement. Deep sequencing reveals a fivefold decrease in secondary siRNA abundance in rde-10 and rde-11 mutant animals, while primary siRNA and microRNA biogenesis is normal. Therefore, the RDE-10/RDE-11 complex is critical for amplifying the exogenous RNAi response. Our work uncovers an essential output of the RNAi pathway in C. elegans.

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Year:  2012        PMID: 22508728      PMCID: PMC3337458          DOI: 10.1101/gad.180679.111

Source DB:  PubMed          Journal:  Genes Dev        ISSN: 0890-9369            Impact factor:   11.361


  45 in total

1.  Four subunit a isoforms of Caenorhabditis elegans vacuolar H+-ATPase. Cell-specific expression during development.

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2.  Transcriptional silencing and promoter methylation triggered by double-stranded RNA.

Authors:  M F Mette; W Aufsatz; J van der Winden; M A Matzke; A J Matzke
Journal:  EMBO J       Date:  2000-10-02       Impact factor: 11.598

Review 3.  RNA-based antiviral immunity.

Authors:  Shou-Wei Ding
Journal:  Nat Rev Immunol       Date:  2010-08-13       Impact factor: 53.106

4.  Dicer functions in RNA interference and in synthesis of small RNA involved in developmental timing in C. elegans.

Authors:  R F Ketting; S E Fischer; E Bernstein; T Sijen; G J Hannon; R H Plasterk
Journal:  Genes Dev       Date:  2001-10-15       Impact factor: 11.361

5.  On the role of RNA amplification in dsRNA-triggered gene silencing.

Authors:  T Sijen; J Fleenor; F Simmer; K L Thijssen; S Parrish; L Timmons; R H Plasterk; A Fire
Journal:  Cell       Date:  2001-11-16       Impact factor: 41.582

6.  A role for the RNase III enzyme DCR-1 in RNA interference and germ line development in Caenorhabditis elegans.

Authors:  S W Knight; B L Bass
Journal:  Science       Date:  2001-08-02       Impact factor: 47.728

7.  RNAi related mechanisms affect both transcriptional and posttranscriptional transgene silencing in Drosophila.

Authors:  Manika Pal-Bhadra; Utpal Bhadra; James A Birchler
Journal:  Mol Cell       Date:  2002-02       Impact factor: 17.970

8.  An abundant class of tiny RNAs with probable regulatory roles in Caenorhabditis elegans.

Authors:  N C Lau; L P Lim; E G Weinstein; D P Bartel
Journal:  Science       Date:  2001-10-26       Impact factor: 47.728

9.  An extensive class of small RNAs in Caenorhabditis elegans.

Authors:  R C Lee; V Ambros
Journal:  Science       Date:  2001-10-26       Impact factor: 47.728

10.  The dsRNA binding protein RDE-4 interacts with RDE-1, DCR-1, and a DExH-box helicase to direct RNAi in C. elegans.

Authors:  Hiroaki Tabara; Erbay Yigit; Haruhiko Siomi; Craig C Mello
Journal:  Cell       Date:  2002-06-28       Impact factor: 41.582

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  12 in total

1.  The DEAD box helicase RDE-12 promotes amplification of RNAi in cytoplasmic foci in C. elegans.

Authors:  Huan Yang; Jim Vallandingham; Philip Shiu; Hua Li; Craig P Hunter; Ho Yi Mak
Journal:  Curr Biol       Date:  2014-03-27       Impact factor: 10.834

2.  Germ Granules Coordinate RNA-Based Epigenetic Inheritance Pathways.

Authors:  Anne E Dodson; Scott Kennedy
Journal:  Dev Cell       Date:  2019-08-08       Impact factor: 12.270

3.  P Granules Protect RNA Interference Genes from Silencing by piRNAs.

Authors:  John Paul T Ouyang; Andrew Folkmann; Lauren Bernard; Chih-Yung Lee; Uri Seroussi; Amanda G Charlesworth; Julie M Claycomb; Geraldine Seydoux
Journal:  Dev Cell       Date:  2019-08-08       Impact factor: 12.270

4.  New insights into siRNA amplification and RNAi.

Authors:  Chi Zhang; Gary Ruvkun
Journal:  RNA Biol       Date:  2012-08-01       Impact factor: 4.652

5.  A ribonuclease coordinates siRNA amplification and mRNA cleavage during RNAi.

Authors:  Hsin-Yue Tsai; Chun-Chieh G Chen; Darryl Conte; James J Moresco; Daniel A Chaves; Shohei Mitani; John R Yates; Ming-Daw Tsai; Craig C Mello
Journal:  Cell       Date:  2015-01-29       Impact factor: 41.582

6.  The Vasa Homolog RDE-12 engages target mRNA and multiple argonaute proteins to promote RNAi in C. elegans.

Authors:  Masaki Shirayama; William Stanney; Weifeng Gu; Meetu Seth; Craig C Mello
Journal:  Curr Biol       Date:  2014-03-27       Impact factor: 10.834

7.  ELLI-1, a novel germline protein, modulates RNAi activity and P-granule accumulation in Caenorhabditis elegans.

Authors:  Karolina M Andralojc; Anne C Campbell; Ashley L Kelly; Markus Terrey; Paige C Tanner; Ian M Gans; Michael J Senter-Zapata; Eraj S Khokhar; Dustin L Updike
Journal:  PLoS Genet       Date:  2017-02-09       Impact factor: 5.917

8.  Transgene-Assisted Genetic Screen Identifies rsd-6 and Novel Genes as Key Components of Antiviral RNA Interference in Caenorhabditis elegans.

Authors:  Tianyun Long; Fei Meng; Rui Lu
Journal:  J Virol       Date:  2018-08-16       Impact factor: 5.103

9.  A tudor domain protein, SIMR-1, promotes siRNA production at piRNA-targeted mRNAs in C. elegans.

Authors:  Kevin I Manage; Alicia K Rogers; Dylan C Wallis; Celja J Uebel; Dorian C Anderson; Dieu An H Nguyen; Katerina Arca; Kristen C Brown; Ricardo J Cordeiro Rodrigues; Bruno Fm de Albuquerque; René F Ketting; Taiowa A Montgomery; Carolyn Marie Phillips
Journal:  Elife       Date:  2020-04-27       Impact factor: 8.140

10.  Gene silencing by double-stranded RNA from C. elegans neurons reveals functional mosaicism of RNA interference.

Authors:  Snusha Ravikumar; Sindhuja Devanapally; Antony M Jose
Journal:  Nucleic Acids Res       Date:  2019-11-04       Impact factor: 16.971

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