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A novel miRNA processing pathway independent of Dicer requires Argonaute2 catalytic activity.


ABSTRACT: Dicer is a central enzyme in microRNA (miRNA) processing. We identified a Dicer-independent miRNA biogenesis pathway that uses Argonaute2 (Ago2) slicer catalytic activity. In contrast to other miRNAs, miR-451 levels were refractory to dicer loss of function but were reduced in MZago2 (maternal-zygotic) mutants. We found that pre-miR-451 processing requires Ago2 catalytic activity in vivo. MZago2 mutants showed delayed erythropoiesis that could be rescued by wild-type Ago2 or miR-451-duplex but not by catalytically dead Ago2. Changing the secondary structure of Dicer-dependent miRNAs to mimic that of pre-miR-451 restored miRNA function and rescued developmental defects in MZdicer mutants, indicating that the pre-miRNA secondary structure determines the processing pathway in vivo. We propose that Ago2-mediated cleavage of pre-miRNAs, followed by uridylation and trimming, generates functional miRNAs independently of Dicer.

SUBMITTER: Cifuentes D 

PROVIDER: S-EPMC3093307 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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A novel miRNA processing pathway independent of Dicer requires Argonaute2 catalytic activity.

Cifuentes Daniel D   Xue Huiling H   Taylor David W DW   Patnode Heather H   Mishima Yuichiro Y   Cheloufi Sihem S   Ma Enbo E   Mane Shrikant S   Hannon Gregory J GJ   Lawson Nathan D ND   Wolfe Scot A SA   Giraldez Antonio J AJ  

Science (New York, N.Y.) 20100506 5986


Dicer is a central enzyme in microRNA (miRNA) processing. We identified a Dicer-independent miRNA biogenesis pathway that uses Argonaute2 (Ago2) slicer catalytic activity. In contrast to other miRNAs, miR-451 levels were refractory to dicer loss of function but were reduced in MZago2 (maternal-zygotic) mutants. We found that pre-miR-451 processing requires Ago2 catalytic activity in vivo. MZago2 mutants showed delayed erythropoiesis that could be rescued by wild-type Ago2 or miR-451-duplex but n  ...[more]

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