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MiR-CLIP reveals iso-miR selective regulation in the miR-124 targetome

Wang, Yuluan; Soneson, Charlotte; Malinowska, Anna L; Laski, Artur; Ghosh, Souvik; Kanitz, Alexander; Gebert, Luca F R; Robinson, Mark D; Hall, Jonathan (2021). MiR-CLIP reveals iso-miR selective regulation in the miR-124 targetome. Nucleic Acids Research, 49(1):25-37.

Abstract

Many microRNAs regulate gene expression via atypical mechanisms, which are difficult to discern using native cross-linking methods. To ascertain the scope of non-canonical miRNA targeting, methods are needed that identify all targets of a given miRNA. We designed a new class of miR-CLIP probe, whereby psoralen is conjugated to the 3p arm of a pre-microRNA to capture targetomes of miR-124 and miR-132 in HEK293T cells. Processing of pre-miR-124 yields miR-124 and a 5′-extended isoform, iso-miR-124. Using miR-CLIP, we identified overlapping targetomes from both isoforms. From a set of 16 targets, 13 were differently inhibited at mRNA/protein levels by the isoforms. Moreover, delivery of pre-miR-124 into cells repressed these targets more strongly than individual treatments with miR-124 and iso-miR-124, suggesting that isomirs from one pre-miRNA may function synergistically. By mining the miR-CLIP targetome, we identified nine G-bulged target-sites that are regulated at the protein level by miR-124 but not isomiR-124. Using structural data, we propose a model involving AGO2 helix-7 that suggests why only miR-124 can engage these sites. In summary, access to the miR-124 targetome via miR-CLIP revealed for the first time how heterogeneous processing of miRNAs combined with non-canonical targeting mechanisms expand the regulatory range of a miRNA.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Institute of Molecular Life Sciences
Dewey Decimal Classification:570 Life sciences; biology
Scopus Subject Areas:Life Sciences > Genetics
Uncontrolled Keywords:Genetics
Language:English
Date:11 January 2021
Deposited On:26 Jan 2021 16:23
Last Modified:25 Aug 2024 01:36
Publisher:Oxford University Press
ISSN:0305-1048
OA Status:Gold
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1093/nar/gkaa1117
Project Information:
  • Funder: SNSF
  • Grant ID: P300PA_177860
  • Project Title: Structural elucidation of the Argonaute2:miR-122:HCV 5' UTR complex: identification of unique features and functional interactions of therapeutic relevance
  • Funder: SNSF
  • Grant ID: 205321_169612
  • Project Title: Chemical Approaches to Functionalize Human microRNAs
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  • Content: Published Version
  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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