The lncRNA LUCAT1 is elevated in inflammatory disease and restrains inflammation by regulating the splicing and stability of NR4A2

Author:

Vierbuchen Tim1,Agarwal Shiuli1,Johnson John L.2,Galia Liraz1ORCID,Lei Xuqiu1ORCID,Stein Karina34,Olagnier David5,Gaede Karoline I.46,Herzmann Christian7,Holm Christian K.5,Heine Holger34ORCID,Pai Athma8,O’Hara Hall Aisling9,Hoebe Kasper2,Fitzgerald Katherine A.1

Affiliation:

1. Division of Innate Immunity, University of Massachusetts Chan Medical School, Worcester, MA 01605

2. Janssen R&D, Discovery, Spring House, PA 19002

3. Division of Innate Immunity, Research Center Borstel–Leibniz Lung Center, Borstel 23845, Germany

4. German Center for Lung Research, Airway Research Center North, Borstel 23845, Germany

5. Department of Biomedicine, Aarhus University, Aarhus 8000, Denmark

6. BioMaterialBank North, Research Center Borstel–Leibniz Lung Center, Borstel 23845, Germany

7. Center for Clinical Studies, Research Center Borstel–Leibniz Lung Center, Borstel 23845, Germany

8. RNA Therapeutics Institute, University of Massachusetts Chan Medical School, Worcester, MA 01605

9. Bristol Myers Squibb, Immunology Cardiovascular and Fibrosis Translational Early Development, Summit, NJ 07901

Abstract

The nuclear long non-coding RNA LUCAT1 has previously been identified as a negative feedback regulator of type I interferon and inflammatory cytokine expression in human myeloid cells. Here, we define the mechanistic basis for the suppression of inflammatory gene expression by LUCAT1. Using comprehensive identification of RNA-binding proteins by mass spectrometry as well as RNA immunoprecipitation, we identified proteins important in processing and alternative splicing of mRNAs as LUCAT1-binding proteins. These included heterogeneous nuclear ribonucleoprotein C, M, and A2B1. Consistent with this finding, cells lacking LUCAT1 have altered splicing of selected immune genes. In particular, upon lipopolysaccharide stimulation, the splicing of the nuclear receptor 4A2 (NR4A2) gene was particularly affected. As a consequence, expression of NR4A2 was reduced and delayed in cells lacking LUCAT1. NR4A2-deficient cells had elevated expression of immune genes. These observations suggest that LUCAT1 is induced to control the splicing and stability of NR4A2, which is in part responsible for the anti-inflammatory effect of LUCAT1. Furthermore, we analyzed a large cohort of patients with inflammatory bowel disease as well as asthma and chronic obstructive pulmonary disease. In these patients, LUCAT1 levels were elevated and in both diseases, positively correlated with disease severity. Collectively, these studies define a key molecular mechanism of LUCAT1-dependent immune regulation through post-transcriptional regulation of mRNAs highlighting its role in the regulation of inflammatory disease.

Funder

HHS | NIH | NIAID | Division of Microbiology and Infectious Diseases, National Institute of Allergy and Infectious Diseases

Deutsche Forschungsgemeinschaft

DFG

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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