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Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker

Melanocytes present in skin and other organs synthesize and store melanin pigment within membrane-delimited organelles called melanosomes. Exposure of human skin to ultraviolet radiation (UV) stimulates melanin production in melanosomes, followed by transfer of melanosomes from melanocytes to neighb...

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Autores principales: Bruder, Jan M., Pfeiffer, Zachary A., Ciriello, Jonathan M., Horrigan, Diana M., Wicks, Nadine L., Flaherty, Benjamin, Oancea, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425493/
https://www.ncbi.nlm.nih.gov/pubmed/22927970
http://dx.doi.org/10.1371/journal.pone.0043465
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author Bruder, Jan M.
Pfeiffer, Zachary A.
Ciriello, Jonathan M.
Horrigan, Diana M.
Wicks, Nadine L.
Flaherty, Benjamin
Oancea, Elena
author_facet Bruder, Jan M.
Pfeiffer, Zachary A.
Ciriello, Jonathan M.
Horrigan, Diana M.
Wicks, Nadine L.
Flaherty, Benjamin
Oancea, Elena
author_sort Bruder, Jan M.
collection PubMed
description Melanocytes present in skin and other organs synthesize and store melanin pigment within membrane-delimited organelles called melanosomes. Exposure of human skin to ultraviolet radiation (UV) stimulates melanin production in melanosomes, followed by transfer of melanosomes from melanocytes to neighboring keratinocytes. Melanosomal function is critical for protecting skin against UV radiation, but the mechanisms underlying melanosomal movement and transfer are not well understood. Here we report a novel fluorescent melanosomal marker, which we used to measure real-time melanosomal dynamics in live human epidermal melanocytes (HEMs) and transfer in melanocyte-keratinocyte co-cultures. A fluorescent fusion protein of Ocular Albinism 1 (OA1) localized to melanosomes in both B16-F1 cells and HEMs, and its expression did not significantly alter melanosomal distribution. Live-cell tracking of OA1-GFP-tagged melanosomes revealed a bimodal kinetic profile, with melanosomes exhibiting combinations of slow and fast movement. We also found that exposure to UV radiation increased the fraction of melanosomes exhibiting fast versus slow movement. In addition, using OA1-GFP in live co-cultures, we monitored melanosomal transfer using time-lapse microscopy. These results highlight OA1-GFP as a specific and effective melanosomal marker for live-cell studies, reveal new aspects of melanosomal dynamics and transfer, and are relevant to understanding the skin’s physiological response to UV radiation.
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spelling pubmed-34254932012-08-27 Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker Bruder, Jan M. Pfeiffer, Zachary A. Ciriello, Jonathan M. Horrigan, Diana M. Wicks, Nadine L. Flaherty, Benjamin Oancea, Elena PLoS One Research Article Melanocytes present in skin and other organs synthesize and store melanin pigment within membrane-delimited organelles called melanosomes. Exposure of human skin to ultraviolet radiation (UV) stimulates melanin production in melanosomes, followed by transfer of melanosomes from melanocytes to neighboring keratinocytes. Melanosomal function is critical for protecting skin against UV radiation, but the mechanisms underlying melanosomal movement and transfer are not well understood. Here we report a novel fluorescent melanosomal marker, which we used to measure real-time melanosomal dynamics in live human epidermal melanocytes (HEMs) and transfer in melanocyte-keratinocyte co-cultures. A fluorescent fusion protein of Ocular Albinism 1 (OA1) localized to melanosomes in both B16-F1 cells and HEMs, and its expression did not significantly alter melanosomal distribution. Live-cell tracking of OA1-GFP-tagged melanosomes revealed a bimodal kinetic profile, with melanosomes exhibiting combinations of slow and fast movement. We also found that exposure to UV radiation increased the fraction of melanosomes exhibiting fast versus slow movement. In addition, using OA1-GFP in live co-cultures, we monitored melanosomal transfer using time-lapse microscopy. These results highlight OA1-GFP as a specific and effective melanosomal marker for live-cell studies, reveal new aspects of melanosomal dynamics and transfer, and are relevant to understanding the skin’s physiological response to UV radiation. Public Library of Science 2012-08-22 /pmc/articles/PMC3425493/ /pubmed/22927970 http://dx.doi.org/10.1371/journal.pone.0043465 Text en © 2012 Bruder et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bruder, Jan M.
Pfeiffer, Zachary A.
Ciriello, Jonathan M.
Horrigan, Diana M.
Wicks, Nadine L.
Flaherty, Benjamin
Oancea, Elena
Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title_full Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title_fullStr Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title_full_unstemmed Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title_short Melanosomal Dynamics Assessed with a Live-Cell Fluorescent Melanosomal Marker
title_sort melanosomal dynamics assessed with a live-cell fluorescent melanosomal marker
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425493/
https://www.ncbi.nlm.nih.gov/pubmed/22927970
http://dx.doi.org/10.1371/journal.pone.0043465
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