circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

Author:

Okholm Trine Line Hauge123,Kamstrup Andreas Bjerregaard4,Nielsen Morten Muhlig13,Hollensen Anne Kruse4ORCID,Graversgaard Mette Laugesen4,Sørensen Matilde Helbo4,Kristensen Lasse Sommer5ORCID,Vang Søren1,Park Samuel S6ORCID,Yeo Eugene6,Dyrskjøt Lars13ORCID,Kjems Jørgen47,Pedersen Jakob Skou138ORCID,Damgaard Christian Kroun4ORCID

Affiliation:

1. Department of Molecular Medicine (MOMA), Aarhus University Hospital

2. Departments of Otolaryngology-Head and Neck Surgery and Microbiology & Immunology, University of California, San Francisco

3. Department of Clinical Medicine, Aarhus University

4. Department of Molecular Biology and Genetics, Aarhus University

5. Department of Biomedicine, Aarhus University

6. Department of Cellular and Molecular Medicine, University of California, San Diego

7. Interdisciplinary Nanoscience Center (iNANO), Aarhus University

8. Bioinformatics Research Center (BiRC), Aarhus University

Abstract

Circular RNAs represent a class of endogenous RNAs that regulate gene expression and influence cell biological decisions with implications for the pathogenesis of several diseases. Here, we disclose a novel gene-regulatory role of circHIPK3 by combining analyses of large genomics datasets and mechanistic cell biological follow-up experiments. Using time-course depletion of circHIPK3 and specific candidate RNA-binding proteins, we identify several perturbed genes by RNA sequencing analyses. Expression-coupled motif analyses identify an 11-mer motif within circHIPK3, which also becomes enriched in genes that are downregulated upon circHIPK3 depletion. By mining eCLIP datasets and combined with RNA immunoprecipitation assays, we demonstrate that the 11-mer motif constitutes a strong binding site for IGF2BP2 in bladder cancer cell lines. Our results suggest that circHIPK3 can sequester IGF2BP2 as a competing endogenous RNA (ceRNA), leading to target mRNA stabilization. As an example of a circHIPK3-regulated gene, we focus on the STAT3 mRNA as a specific substrate of IGF2BP2 and validate that manipulation of circHIPK3 regulates IGF2BP2-STAT3 mRNA binding and, thereby, STAT3 mRNA levels. Surprisingly, absolute copy number quantifications demonstrate that IGF2BP2 outnumbers circHIPK3 by orders of magnitude, which is inconsistent with a simple 1:1 ceRNA hypothesis. Instead, we show that circHIPK3 can nucleate multiple copies of IGF2BP2, potentially via phase separation, to produce IGF2BP2 condensates. Our results support a model where a few cellular circHIPK3 molecules can induce IGF2BP2 condensation, thereby regulating key factors for cell proliferation.

Funder

Lundbeck Foundation

Danish Cancer Society

Danish Council for Independent Research, Medical Sciences

Novo Nordisk Fonden

Harboefonden

Aage og Johanne Louis-Hansens Fond

Carlsbergfondet

Dagmar Marshalls Fond

National Institutes of Health

Paul G. Allen Family Foundation

Publisher

eLife Sciences Publications, Ltd

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