IL11 is elevated in systemic sclerosis and IL11-dependent ERK signalling underlies TGFβ-mediated activation of dermal fibroblasts

Author:

Adami Eleonora1ORCID,Viswanathan Sivakumar1ORCID,Widjaja Anissa A1,Ng Benjamin2,Chothani Sonia1,Zhihao Nevin2,Tan Jessie2,Lio Pei Min2,George Benjamin L1,Altunoglu Umut3,Ghosh Kakaly4,Paleja Bhairav S5,Schafer Sebastian12,Reversade Bruno3456,Albani Salvatore7,Ling Andrea Low Hsiu89,O'Reilly Steven10ORCID,Cook Stuart A1211ORCID

Affiliation:

1. Cardiovascular and Metabolic Disorders Program, Duke-National University of Singapore Medical School

2. National Heart Research Institute Singapore, National Heart Centre Singapore, Singapore

3. Department of Medical Genetics, Koç University, School of Medicine, Istanbul, Turkey

4. Genome Institute of Singapore, Human Genetics and Therapeutics Laboratory

5. Institute of Molecular and Cellular Biology, A*STAR

6. Department of Paediatrics, National University of Singapore

7. Translational Immunology Institute (TII), SingHealth-DukeNUS Academic Medical Centre

8. Department of Rheumatology and Immunology, Singapore General Hospital

9. Duke-National University of Singapore Medical School, Singapore

10. Department of Biosciences, Durham University, Durham

11. MRC-London Institute of Medical Sciences, Hammersmith Hospital Campus, London, UK

Abstract

Abstract Objectives Interleukin 11 (IL11) is highly upregulated in skin and lung fibroblasts from patients with systemic sclerosis (SSc). Here we tested whether IL11 is mechanistically linked with activation of human dermal fibroblasts (HDFs) from patients with SSc or controls. Methods We measured serum IL11 levels in volunteers and patients with early diffuse SSc and manipulated IL11 signalling in HDFs using gain- and loss-of-function approaches that we combined with molecular and cellular phenotyping. Results In patients with SSc, serum IL11 levels are elevated as compared with healthy controls. All transforming growth factor beta (TGFβ) isoforms induced IL11 secretion from HDFs, which highly express IL11 receptor α-subunit and the glycoprotein 130 (gp130) co-receptor, suggestive of an autocrine loop of IL11 activity in HDFs. IL11 stimulated ERK activation in HDFs and resulted in HDF-to-myofibroblast transformation and extracellular matrix secretion. The pro-fibrotic action of IL11 in HDFs appeared unrelated to STAT3 activity, independent of TGFβ upregulation and was not associated with phosphorylation of SMAD2/3. Inhibition of IL11 signalling using either a neutralizing antibody against IL11 or siRNA against IL11RA reduced TGFβ-induced HDF proliferation, matrix production and cell migration, which was phenocopied by pharmacological inhibition of ERK. Conclusions These data reveal that autocrine IL11-dependent ERK activity alone or downstream of TGFβ stimulation promotes fibrosis phenotypes in dermal fibroblasts and suggest IL11 as a potential therapeutic target in SSc.

Funder

National Medical Research Council

Singapore STaR

NMRC Centre Grant

NHCS

Goh Foundation, Tanoto Foundation

NMRC

Duke-NUS, BMRC

Publisher

Oxford University Press (OUP)

Subject

Pharmacology (medical),Rheumatology

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