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Purified Argonaute2 and an siRNA form recombinant human RISC

Nature Structural & Molecular BiologyPublished 30 March 2005
Fabiola V. Rivas, Niraj H. Tolia, Ji‐Joon Song, J.P. Aragon, Jidong Liu, Gregory J. Hannon
Citations775
SJR quartileQ1
SJR score6.19
SNIP2.06

TL;DR

It is demonstrated that recombinant, human Argonaute2 can combine with a small interfering RNA (siRNA) to form minimal RISC that accurately cleaves substrate RNAs and provide a source of recombinant enzyme for detailed biochemical studies of the RNAi effector complex.

Abstract

Genetic, biochemical and structural studies have implicated Argonaute proteins as the catalytic core of the RNAi effector complex, RISC. Here we show that recombinant, human Argonaute2 can combine with a small interfering RNA (siRNA) to form minimal RISC that accurately cleaves substrate RNAs. Recombinant RISC shows many of the properties of RISC purified from human or Drosophila melanogaster cells but also has surprising features. It shows no stimulation by ATP, suggesting that factors promoting product release are missing from the recombinant enzyme. The active site is made up of a unique Asp-Asp-His (DDH) motif. In the RISC reconstitution system, the siRNA 5' phosphate is important for the stability and the fidelity of the complex but is not essential for the creation of an active enzyme. These studies demonstrate that Argonaute proteins catalyze mRNA cleavage within RISC and provide a source of recombinant enzyme for detailed biochemical studies of the RNAi effector complex.

Keywords

Biochemistry, Genetics and Molecular Biology