High-Resolution In Vivo Identification of miRNA Targets by Halo-Enhanced Ago2 Pull-Down.

Publication Type Academic Article
Authors Li X, Pritykin Y, Concepcion C, Lu Y, La Rocca G, Zhang M, King B, Cook P, Au Y, Popow O, Paulo J, Otis H, Mastroleo C, Ogrodowski P, Schreiner R, Haigis K, Betel D, Leslie C, Ventura A
Journal Mol Cell
Volume 79
Issue 1
Pagination 167-179.e11
Date Published 06/03/2020
ISSN 1097-4164
Keywords Argonaute Proteins, Embryonic Stem Cells, Glioma, MicroRNAs, RNA, Messenger, Recombinant Fusion Proteins
Abstract The identification of microRNA (miRNA) targets by Ago2 crosslinking-immunoprecipitation (CLIP) methods has provided major insights into the biology of this important class of non-coding RNAs. However, these methods are technically challenging and not easily applicable to an in vivo setting. To overcome these limitations and facilitate the investigation of miRNA functions in vivo, we have developed a method based on a genetically engineered mouse harboring a conditional Halo-Ago2 allele expressed from the endogenous Ago2 locus. By using a resin conjugated to the HaloTag ligand, Ago2-miRNA-mRNA complexes can be purified from cells and tissues expressing the endogenous Halo-Ago2 allele. We demonstrate the reproducibility and sensitivity of this method in mouse embryonic stem cells, developing embryos, adult tissues, and autochthonous mouse models of human brain and lung cancers. This method and the datasets we have generated will facilitate the characterization of miRNA-mRNA networks in vivo under physiological and pathological conditions.
DOI 10.1016/j.molcel.2020.05.009
PubMed ID 32497496
PubMed Central ID PMC7446397
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