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Phenotypic and functional translation of IL33 genetics in asthma.

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journal contribution
posted on 2020-06-03, 09:13 authored by Maria E Ketelaar, Michael A Portelli, F Nicole Dijk, N Shrine, A Faiz, CJ Vermeulen, CJ Xu, J Hankinson, S Bhaker, AP Henry, CK Billington, DE Shaw, SR Johnson, AV Benest, V Pang, D Bates, ZEK Pogson, A Fogarty, TM McKeever, A Singapuri, L Heaney, AH Mansur, R Chaudhuri, NC Thomson, JW Holloway, GA Lockett, PH Howarth, R Niven, A Simpson, MD Tobin, IP Hall, LV Wain, JD Blakey, CE Brightling, M Obeidat, DD Sin, C Nickle, Y Bossé, JM Vonk, M van den Berge, GH Koppelman, Ian Sayers, Martijn C Nawijn
BACKGROUND:Asthma is a complex disease with multiple phenotypes that may differ in disease pathobiology and treatment response. Interleukin 33 (IL33) single nucleotide polymorphisms (SNPs) have been reproducibly associated with asthma. IL33 levels are elevated in sputum, and bronchial biopsies of asthma patients. The functional consequences of IL33 asthma SNPs remain unknown. OBJECTIVE:We studied whether IL33 SNPs associate with asthma-related phenotypes and with IL33 expression in lung or bronchial epithelium. We investigated the effect of increased IL33 expression on human bronchial epithelial cell (HBEC) function. METHODS:Association between IL33 SNPs (Chr9: 5,815,786-6,657,983) and asthma phenotypes (Lifelines/DAG/GASP cohorts) and between SNPs and expression (lung tissue, bronchial brushes, HBECs) was done using regression modelling. Lentiviral overexpression was used to study IL33 effects on HBECs. RESULTS:161 SNPs spanning the IL33 region associated with one or more asthma phenotypes after correction for multiple testing. We report one main independent signal tagged by rs992969 associating with blood eosinophil levels, asthma and eosinophilic asthma. A second, independent signal tagged by rs4008366 presented modest association with eosinophilic asthma. Neither signal associated with FEV1, FEV1/FVC, atopy, and age of asthma onset. The two IL33 signals are expression quantitative loci (eQTLs) in bronchial brushes and cultured HBECs, but not in lung tissue. IL33 overexpression in vitro resulted in reduced viability and ROS-capturing of HBECs, without influencing epithelial cell count, metabolic activity or barrier function. CONCLUSION:We identify IL33 as an epithelial susceptibility gene for eosinophilia and asthma, provide mechanistic insight, and implicate targeting of the IL33 pathway specifically in eosinophilic asthma.

Funding

This study was supported by Lung Foundation of the Netherlands grants no. AF 95.05 (GHK), AF 98.48 (GHK) and no.AF3.2.09.081JU, (GHK, MCN), the University Medical Center Groningen (GHK), Dutch TerMeulen Fund (MEK) and the Ubbo Emmius Foundation (GHK), and a grant from GSK (IS, IH, MCN, GHK). The Lifelines Biobank initiative has been made possible by subsidy from the Dutch Ministry of Health, Welfare and Sport, the Dutch Ministry of Economic Affairs, the University Medical Center Groningen (UMCG the Netherlands), University Groningen and the Northern Provinces of the Netherlands. The generation of the lung tissue dataset was funded by Merck. This study was also funded by an Asthma UK Grant to IS, IPH, DES, CEB (AUK-PG-2013-188) and additional Asthma UK funding to IS and DES (Grants 10/006 and 11/031). Genotyping in GASP was additionally supported by Rosetrees Trust (Grant to IS), and AirPROM (CEB, MT and IS). This work was supported by the Medical Research Council [grant number MC_PC_12010], a Strategic Award to IPH, MDT, and LVW, and an MRC project grant to SRJ (G1100163). LVW holds a GSK/ British Lung Foundation Chair in Respiratory Research. Asthma UK funded the GASP initiative (AUK-PG-2013-188). This work was part funded by the NIHR Leicester Respiratory Biomedical Centre. AS is supported by the Manchester Biomedical Research Centre

History

Citation

Journal of Allergy and Clinical Immunology Available online 19 May 2020 In Press, Journal Pre-proof

Version

  • AM (Accepted Manuscript)

Published in

The Journal of allergy and clinical immunology

Publisher

Elsevier BV

issn

1097-6825

eissn

1097-6825

Acceptance date

2020-04-14

Copyright date

2020

Notes

Codes available on https://git.web.rug.nl/P252222/IL33_Ketelaaretal_JACI2020. (µZLNL¶)

Language

eng

Publisher version

https://www.sciencedirect.com/science/article/pii/S0091674920306801

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