Coupling of melanocyte signaling and mechanics by caveolae is required for human skin pigmentation

Author:

Domingues LiaORCID,Hurbain Ilse,Gilles-Marsens Floriane,Sirés-Campos JuliaORCID,André Nathalie,Dewulf Melissa,Romao Maryse,Viaris de Lesegno Christine,Macé Anne-Sophie,Blouin CédricORCID,Guéré Christelle,Vié Katell,Raposo Graça,Lamaze Christophe,Delevoye CédricORCID

Abstract

AbstractTissue homeostasis requires regulation of cell–cell communication, which relies on signaling molecules and cell contacts. In skin epidermis, keratinocytes secrete factors transduced by melanocytes into signaling cues promoting their pigmentation and dendrite outgrowth, while melanocytes transfer melanin pigments to keratinocytes to convey skin photoprotection. How epidermal cells integrate these functions remains poorly characterized. Here, we show that caveolae are asymmetrically distributed in melanocytes and particularly abundant at the melanocyte–keratinocyte interface in epidermis. Caveolae in melanocytes are modulated by ultraviolet radiations and keratinocytes-released factors, like miRNAs. Preventing caveolae formation in melanocytes increases melanin pigment synthesis through upregulation of cAMP signaling and decreases cell protrusions, cell–cell contacts, pigment transfer and epidermis pigmentation. Altogether, we identify that caveolae serve as molecular hubs that couple signaling outputs from keratinocytes to mechanical plasticity of pigment cells. The coordination of intercellular communication and contacts by caveolae is thus crucial to skin pigmentation and tissue homeostasis.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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