Molecular Mechanisms of RNA Interference

Author:

Wilson Ross C.1,Doudna Jennifer A.2134

Affiliation:

1. Department of Molecular and Cell Biology,

2. Howard Hughes Medical Institute,

3. Department of Chemistry, University of California, Berkeley, California 94720;

4. Physical Biosciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720

Abstract

Small RNA molecules regulate eukaryotic gene expression during development and in response to stresses including viral infection. Specialized ribonucleases and RNA-binding proteins govern the production and action of small regulatory RNAs. After initial processing in the nucleus by Drosha, precursor microRNAs (pre-miRNAs) are transported to the cytoplasm, where Dicer cleavage generates mature microRNAs (miRNAs) and short interfering RNAs (siRNAs). These double-stranded products assemble with Argonaute proteins such that one strand is preferentially selected and used to guide sequence-specific silencing of complementary target mRNAs by endonucleolytic cleavage or translational repression. Molecular structures of Dicer and Argonaute proteins, and of RNA-bound complexes, have offered exciting insights into the mechanisms operating at the heart of RNA-silencing pathways.

Publisher

Annual Reviews

Subject

Cell Biology,Biochemistry,Bioengineering,Structural Biology,Biophysics

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