A protective Langerhans cell-keratinocyte axis that is dysfunctional in photosensitivity.
William D ShipmanSusan ChyouAnusha RamanathanPeter M IzmirlySneh SharmaTania PannelliniDragos C DasoveanuXiaoping QingCynthia M MagroRichard D GransteinMichelle A LowesEric G PamerDaniel H KaplanJane E SalmonBabak J MehraraJames W YoungRobert M ClancyCarl P BlobelTheresa T LuPublished in: Science translational medicine (2019)
Photosensitivity, or skin sensitivity to ultraviolet radiation (UVR), is a feature of lupus erythematosus and other autoimmune and dermatologic conditions, but the mechanistic underpinnings are poorly understood. We identify a Langerhans cell (LC)-keratinocyte axis that limits UVR-induced keratinocyte apoptosis and skin injury via keratinocyte epidermal growth factor receptor (EGFR) stimulation. We show that the absence of LCs in Langerin-diphtheria toxin subunit A (DTA) mice leads to photosensitivity and that, in vitro, mouse and human LCs can directly protect keratinocytes from UVR-induced apoptosis. LCs express EGFR ligands and a disintegrin and metalloprotease 17 (ADAM17), the metalloprotease that activates EGFR ligands. Deletion of ADAM17 from LCs leads to photosensitivity, and UVR induces LC ADAM17 activation and generation of soluble active EGFR ligands, suggesting that LCs protect by providing activated EGFR ligands to keratinocytes. Photosensitive systemic lupus erythematosus (SLE) models and human SLE skin show reduced epidermal EGFR phosphorylation and LC defects, and a topical EGFR ligand reduces photosensitivity. Together, our data establish a direct tissue-protective function for LCs, reveal a mechanistic basis for photosensitivity, and suggest EGFR stimulation as a treatment for photosensitivity in lupus erythematosus and potentially other autoimmune and dermatologic conditions.
Keyphrases
- epidermal growth factor receptor
- systemic lupus erythematosus
- tyrosine kinase
- small cell lung cancer
- advanced non small cell lung cancer
- disease activity
- wound healing
- induced apoptosis
- endothelial cells
- endoplasmic reticulum stress
- oxidative stress
- signaling pathway
- mass spectrometry
- multiple sclerosis
- cell therapy
- gene expression
- machine learning
- high resolution
- cell death
- bone marrow
- protein kinase
- artificial intelligence
- diabetic rats
- skeletal muscle
- cell proliferation
- mesenchymal stem cells
- solid phase extraction
- cell cycle arrest
- radiation induced
- tandem mass spectrometry
- data analysis
- pluripotent stem cells