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Selective autophagy degrades DICER and AGO2 and regulates miRNA activity

Micro (mi)RNAs form a class of short RNAs (~21 nt) that post-transcriptionally regulate partially complementary messenger (m)RNAs. Each miRNA may target tens-to-hundreds of transcripts to control key biological processes. While the biochemical reactions underpinning miRNA biogenesis and activity are...

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Autores principales: Gibbings, Derrick, Mostowy, Serge, Jay, Florence, Schwab, Yannick, Cossart, Pascale, Voinnet, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3771578/
https://www.ncbi.nlm.nih.gov/pubmed/23143396
http://dx.doi.org/10.1038/ncb2611
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author Gibbings, Derrick
Mostowy, Serge
Jay, Florence
Schwab, Yannick
Cossart, Pascale
Voinnet, Olivier
author_facet Gibbings, Derrick
Mostowy, Serge
Jay, Florence
Schwab, Yannick
Cossart, Pascale
Voinnet, Olivier
author_sort Gibbings, Derrick
collection PubMed
description Micro (mi)RNAs form a class of short RNAs (~21 nt) that post-transcriptionally regulate partially complementary messenger (m)RNAs. Each miRNA may target tens-to-hundreds of transcripts to control key biological processes. While the biochemical reactions underpinning miRNA biogenesis and activity are relatively well-defined(1,2), and the importance of their homeostasis increasingly evident, the processes underlying regulation of miRNA pathways in vivo are still largely elusive(3). Autophagy, a degradative process in which cytoplasmic material is targeted into double-membrane vacuoles, is recognized to critically contribute to cellular homeostasis. Here, we show that the miRNA-processing enzyme, DICER, and the major miRNA effector, AGO2, are targeted for degradation as miRNA-free entities by the selective autophagy receptor NDP52. Autophagy establishes a checkpoint required for continued loading of miRNA into AGO2; accordingly, NDP52 and autophagy are required for homeostasis and activity of tested miRNAs. Autophagy also engages post-transcriptional regulation of the DICER mRNA, underscoring the importance of fine-tuned regulation of the miRNA pathway. These findings have implications for human diseases linked to misregulated autophagy, DICER- and miRNA-levels, including cancer.
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spelling pubmed-37715782013-09-12 Selective autophagy degrades DICER and AGO2 and regulates miRNA activity Gibbings, Derrick Mostowy, Serge Jay, Florence Schwab, Yannick Cossart, Pascale Voinnet, Olivier Nat Cell Biol Article Micro (mi)RNAs form a class of short RNAs (~21 nt) that post-transcriptionally regulate partially complementary messenger (m)RNAs. Each miRNA may target tens-to-hundreds of transcripts to control key biological processes. While the biochemical reactions underpinning miRNA biogenesis and activity are relatively well-defined(1,2), and the importance of their homeostasis increasingly evident, the processes underlying regulation of miRNA pathways in vivo are still largely elusive(3). Autophagy, a degradative process in which cytoplasmic material is targeted into double-membrane vacuoles, is recognized to critically contribute to cellular homeostasis. Here, we show that the miRNA-processing enzyme, DICER, and the major miRNA effector, AGO2, are targeted for degradation as miRNA-free entities by the selective autophagy receptor NDP52. Autophagy establishes a checkpoint required for continued loading of miRNA into AGO2; accordingly, NDP52 and autophagy are required for homeostasis and activity of tested miRNAs. Autophagy also engages post-transcriptional regulation of the DICER mRNA, underscoring the importance of fine-tuned regulation of the miRNA pathway. These findings have implications for human diseases linked to misregulated autophagy, DICER- and miRNA-levels, including cancer. 2012-12 /pmc/articles/PMC3771578/ /pubmed/23143396 http://dx.doi.org/10.1038/ncb2611 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Gibbings, Derrick
Mostowy, Serge
Jay, Florence
Schwab, Yannick
Cossart, Pascale
Voinnet, Olivier
Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title_full Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title_fullStr Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title_full_unstemmed Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title_short Selective autophagy degrades DICER and AGO2 and regulates miRNA activity
title_sort selective autophagy degrades dicer and ago2 and regulates mirna activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3771578/
https://www.ncbi.nlm.nih.gov/pubmed/23143396
http://dx.doi.org/10.1038/ncb2611
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