Analysis of the function of ADAM17 in iRhom2 curly-bare and tylosis with esophageal cancer mutant mice

Author:

Rabinowitsch Ariana I.12ORCID,Maretzky Thorsten3ORCID,Weskamp Gisela4,Haxaire Coline4ORCID,Tueshaus Johanna567,Lichtenthaler Stefan F.5678ORCID,Monette Sébastien9ORCID,Blobel Carl P.14710ORCID

Affiliation:

1. Memorial Sloan Kettering Cancer Center, Weill Cornell Medicine, The Rockefeller University 1 Tri-Institutional MD/PhD Program , , New York, NY 10021 , USA

2. Weill Cornell Medicine 2 Program in Biochemistry, Cellular and Molecular Biology , , New York, NY 10021 , USA

3. Roy J. and Lucille A. Carver College of Medicine, University of Iowa 3 Inflammation Program and Department of Internal Medicine , , Iowa City, IA 52242 , USA

4. Hospital for Special Surgery 4 Arthritis and Tissue Degeneration Program , , New York, NY 10021 , USA

5. German Center for Neurodegenerative Diseases (DZNE) 5 , 81377 Munich , Germany

6. Neuroproteomics, School of Medicine, Klinikum rechts der Isar, Technical University of Munich 6 , 81675 Munich , Germany

7. Institute for Advanced Study, Technical University of Munich 7 , 85748 Garching , Germany

8. Munich Cluster for Systems Neurology (SyNergy) 8 , 81377 Munich , Germany

9. Hospital for Special Surgery, Memorial Sloan Kettering Cancer Center, The Rockefeller University, Weill Cornell Medicine 9 Tri-Institutional Laboratory of Comparative Pathology , , New York, NY 10021 , USA

10. Weill Cornell Medicine 10 Department of Physiology, Biophysics and Systems Biology , , New York, NY 10021 , USA

Abstract

ABSTRACT Tylosis with oesophageal cancer (TOC) is a rare familial disorder caused by cytoplasmic mutations in inactive rhomboid 2 (iRhom2 or iR2, encoded by Rhbdf2). iR2 and the related iRhom1 (or iR1, encoded by Rhbdf1) are key regulators of the membrane-anchored metalloprotease ADAM17, which is required for activating EGFR ligands and for releasing pro-inflammatory cytokines such as TNFα (or TNF). A cytoplasmic deletion in iR2, including the TOC site, leads to curly coat or bare skin (cub) in mice, whereas a knock-in TOC mutation (toc) causes less severe alopecia and wavy fur. The abnormal skin and hair phenotypes of iR2cub/cub and iR2toc/toc mice depend on amphiregulin (Areg) and Adam17, as loss of one allele of either gene rescues the fur phenotypes. Remarkably, we found that iR1−/− iR2cub/cub mice survived, despite a lack of mature ADAM17, whereas iR2cub/cub Adam17−/− mice died perinatally, suggesting that the iR2cub gain-of-function mutation requires the presence of ADAM17, but not its catalytic activity. The iR2toc mutation did not substantially reduce the levels of mature ADAM17, but instead affected its function in a substrate-selective manner. Our findings provide new insights into the role of the cytoplasmic domain of iR2 in vivo, with implications for the treatment of TOC patients.

Funder

National Institutes of Health

National Institute of General Medical Sciences

National Cancer Institute

Deutsche Forschungsgemeinschaft

Publisher

The Company of Biologists

Subject

Cell Biology

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