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RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium

Skin pigmentation is imparted by melanin and is crucial for photoprotection against UVR. Melanin is synthesized and packaged into melanosomes within melanocytes and is then transferred to keratinocytes (KCs). Although the molecular players involved in melanogenesis have been extensively studied, tho...

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Autores principales: Cabaço, Luís C., Bento-Lopes, Liliana, Neto, Matilde V., Ferreira, Andreia, Staubli, Wanja B.L., Ramalho, José S., Seabra, Miguel C., Barral, Duarte C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460155/
https://www.ncbi.nlm.nih.gov/pubmed/36090299
http://dx.doi.org/10.1016/j.xjidi.2022.100139
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author Cabaço, Luís C.
Bento-Lopes, Liliana
Neto, Matilde V.
Ferreira, Andreia
Staubli, Wanja B.L.
Ramalho, José S.
Seabra, Miguel C.
Barral, Duarte C.
author_facet Cabaço, Luís C.
Bento-Lopes, Liliana
Neto, Matilde V.
Ferreira, Andreia
Staubli, Wanja B.L.
Ramalho, José S.
Seabra, Miguel C.
Barral, Duarte C.
author_sort Cabaço, Luís C.
collection PubMed
description Skin pigmentation is imparted by melanin and is crucial for photoprotection against UVR. Melanin is synthesized and packaged into melanosomes within melanocytes and is then transferred to keratinocytes (KCs). Although the molecular players involved in melanogenesis have been extensively studied, those underlying melanin transfer remain unclear. Previously, our group proposed that coupled exocytosis/phagocytosis is the predominant mechanism of melanin transfer in human skin and showed an essential role for RAB11B and the exocyst tethering complex in this process. In this study, we show that soluble factors present in KC-conditioned medium stimulate melanin exocytosis from melanocytes and transfer to KCs. Moreover, we found that these factors are released by differentiated KCs but not by basal layer KCs. Furthermore, we found that RAB3A regulates melanin exocytosis and transfer stimulated by KC-conditioned medium. Indeed, KC-conditioned medium enhances the recruitment of RAB3A to melanosomes in melanocyte dendrites. Therefore, our results suggest the existence of two distinct routes of melanin exocytosis: a basal route controlled by RAB11B and a RAB3A-dependent route, stimulated by KC-conditioned medium. Thus, this study provides evidence that soluble factors released by differentiated KCs control skin pigmentation by promoting the accumulation of RAB3A-positive melanosomes in melanocyte dendrites and their release and subsequent transfer to KCs.
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spelling pubmed-94601552022-09-10 RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium Cabaço, Luís C. Bento-Lopes, Liliana Neto, Matilde V. Ferreira, Andreia Staubli, Wanja B.L. Ramalho, José S. Seabra, Miguel C. Barral, Duarte C. JID Innov Original Article Skin pigmentation is imparted by melanin and is crucial for photoprotection against UVR. Melanin is synthesized and packaged into melanosomes within melanocytes and is then transferred to keratinocytes (KCs). Although the molecular players involved in melanogenesis have been extensively studied, those underlying melanin transfer remain unclear. Previously, our group proposed that coupled exocytosis/phagocytosis is the predominant mechanism of melanin transfer in human skin and showed an essential role for RAB11B and the exocyst tethering complex in this process. In this study, we show that soluble factors present in KC-conditioned medium stimulate melanin exocytosis from melanocytes and transfer to KCs. Moreover, we found that these factors are released by differentiated KCs but not by basal layer KCs. Furthermore, we found that RAB3A regulates melanin exocytosis and transfer stimulated by KC-conditioned medium. Indeed, KC-conditioned medium enhances the recruitment of RAB3A to melanosomes in melanocyte dendrites. Therefore, our results suggest the existence of two distinct routes of melanin exocytosis: a basal route controlled by RAB11B and a RAB3A-dependent route, stimulated by KC-conditioned medium. Thus, this study provides evidence that soluble factors released by differentiated KCs control skin pigmentation by promoting the accumulation of RAB3A-positive melanosomes in melanocyte dendrites and their release and subsequent transfer to KCs. Elsevier 2022-06-21 /pmc/articles/PMC9460155/ /pubmed/36090299 http://dx.doi.org/10.1016/j.xjidi.2022.100139 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Cabaço, Luís C.
Bento-Lopes, Liliana
Neto, Matilde V.
Ferreira, Andreia
Staubli, Wanja B.L.
Ramalho, José S.
Seabra, Miguel C.
Barral, Duarte C.
RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title_full RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title_fullStr RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title_full_unstemmed RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title_short RAB3A Regulates Melanin Exocytosis and Transfer Induced by Keratinocyte-Conditioned Medium
title_sort rab3a regulates melanin exocytosis and transfer induced by keratinocyte-conditioned medium
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460155/
https://www.ncbi.nlm.nih.gov/pubmed/36090299
http://dx.doi.org/10.1016/j.xjidi.2022.100139
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