The interferon-rich skin environment regulates Langerhans cell ADAM17 to promote photosensitivity in lupus

Author:

Li Thomas Morgan1ORCID,Zyulina Victoria12,Seltzer Ethan S1ORCID,Dacic Marija345,Chinenov Yurii3,Daamen Andrea R6,Veiga Keila R178,Schwartz Noa19ORCID,Oliver David J3,Cabahug-Zuckerman Pamela1,Lora Jose45,Liu Yong10ORCID,Shipman William D11112,Ambler William G178,Taber Sarah F78,Onel Karen B78,Zippin Jonathan H10ORCID,Rashighi Mehdi13,Krueger James G14,Anandasabapathy Niroshana101112,Rogatsky Inez23412ORCID,Jabbari Ali14,Blobel Carl P4515,Lipsky Peter E6,Lu Theresa T127812ORCID

Affiliation:

1. Autoimmunity and Inflammation Program, Hospital for Special Surgery Research Institute

2. Department of Microbiology and Immunology, Weill Cornell Medical College

3. David Z. Rosensweig Genomics Research Center, Hospital for Special Surgery Research Institute

4. Arthritis and Tissue Degeneration Program, Hospital for Special Surgery Research Institute

5. Physiology, Biophysics, and Systems Biology Program, Weill Cornell Graduate School of Medical Sciences

6. Department of Medicine, AMPEL BioSolutions

7. Pediatric Rheumatology, Department of Medicine, Hospital for Special Surgery

8. Department of Pediatrics, Weill Cornell Medical College

9. Rheumatology, Department of Medicine, Hospital for Special Surgery

10. Department of Dermatology, Weill Cornell Medical College

11. Weill Cornell/Rockefeller/Sloan-Kettering Tri-Institutional MD-PhD Program, Weill Cornell Medical College

12. Immunology and Microbial Pathogenesis Program, Weill Cornell Graduate School of Medical Sciences

13. Department of Dermatology, University of Massachusetts Medical School

14. Laboratory of Investigative Dermatology, Rockefeller University

15. Department of Physiology, Biophysics, and Systems Biology, Weill Cornell Medical College

Abstract

The autoimmune disease lupus erythematosus (lupus) is characterized by photosensitivity, where even ambient ultraviolet radiation (UVR) exposure can lead to development of inflammatory skin lesions. We have previously shown that Langerhans cells (LCs) limit keratinocyte apoptosis and photosensitivity via a disintegrin and metalloprotease 17 (ADAM17)-mediated release of epidermal growth factor receptor (EGFR) ligands and that LC ADAM17 sheddase activity is reduced in lupus. Here, we sought to understand how the lupus skin environment contributes to LC ADAM17 dysfunction and, in the process, differentiate between effects on LC ADAM17 sheddase function, LC ADAM17 expression, and LC numbers. We show through transcriptomic analysis a shared IFN-rich environment in non-lesional skin across human lupus and three murine models: MRL/lpr, B6.Sle1yaa, and imiquimod (IMQ) mice. IFN-I inhibits LC ADAM17 sheddase activity in murine and human LCs, and IFNAR blockade in lupus model mice restores LC ADAM17 sheddase activity, all without consistent effects on LC ADAM17 protein expression or LC numbers. Anti-IFNAR-mediated LC ADAM17 sheddase function restoration is associated with reduced photosensitive responses that are dependent on EGFR signaling and LC ADAM17. Reactive oxygen species (ROS) is a known mediator of ADAM17 activity; we show that UVR-induced LC ROS production is reduced in lupus model mice, restored by anti-IFNAR, and is cytoplasmic in origin. Our findings suggest that IFN-I promotes photosensitivity at least in part by inhibiting UVR-induced LC ADAM17 sheddase function and raise the possibility that anifrolumab ameliorates lupus skin disease in part by restoring this function. This work provides insight into IFN-I-mediated disease mechanisms, LC regulation, and a potential mechanism of action for anifrolumab in lupus.

Funder

Alpha Omega Alpha Honor Medical Society Carolyn L. Kuckein fellowship

HSS Medical Student Summer Research Fellowhship

Erwin Schrodinger Fellowship

NIH

NIH MSTP grant

Tow Foundation

Veterans Administration VA Merit

Dermatology Foundation Physician Scientist Career Development Award

DOD

Lupus Research Alliance

St. Giles Foundation

Barbara Volcker Center for Women and Rheumatic Diseases

A Lasting Mark Foundation

Publisher

eLife Sciences Publications, Ltd

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