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SLC45A2 protein stability and regulation of melanosome pH determine melanocyte pigmentation.

Le, L; Escobar, IE; Ho, T; Lefkovith, AJ; Latteri, E; Haltaufderhyde, KD; Dennis, MK; Plowright, L; Sviderskaya, EV; Bennett, DC; et al. Le, L; Escobar, IE; Ho, T; Lefkovith, AJ; Latteri, E; Haltaufderhyde, KD; Dennis, MK; Plowright, L; Sviderskaya, EV; Bennett, DC; Oancea, E; Marks, MS (2020) SLC45A2 protein stability and regulation of melanosome pH determine melanocyte pigmentation. Mol Biol Cell, 31 (24). pp. 2687-2702. ISSN 1939-4586 https://doi.org/10.1091/mbc.E20-03-0200
SGUL Authors: Bennett, Dorothy Catherine

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Abstract

SLC45A2 encodes a putative transporter expressed primarily in pigment cells. SLC45A2 mutations cause oculocutaneous albinism type 4 (OCA4) and polymorphisms are associated with pigmentation variation, but the localization, function, and regulation of SLC45A2 and its variants remain unknown. We show that SLC45A2 localizes to a cohort of mature melanosomes that only partially overlaps with the cohort expressing the chloride channel OCA2. SLC45A2 expressed ectopically in HeLa cells localizes to lysosomes and raises lysosomal pH, suggesting that in melanocytes SLC45A2 expression, like OCA2 expression, results in the deacidification of maturing melanosomes to support melanin synthesis. Interestingly, OCA2 overexpression compensates for loss of SLC45A2 expression in pigmentation. Analyses of SLC45A2- and OCA2-deficient mouse melanocytes show that SLC45A2 likely functions later during melanosome maturation than OCA2. Moreover, the light skin-associated SLC45A2 allelic F374 variant restores only moderate pigmentation to SLC45A2-deficient melanocytes due to rapid proteasome-dependent degradation resulting in lower protein expression levels in melanosomes than the dark skin-associated allelic L374 variant. Our data suggest that SLC45A2 maintains melanosome neutralization that is initially orchestrated by transient OCA2 activity to support melanization at late stages of melanosome maturation, and that a common allelic variant imparts reduced activity due to protein instability.

Item Type: Article
Additional Information: © 2020 Le et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0).
Keywords: Developmental Biology, 06 Biological Sciences, 11 Medical and Health Sciences
SGUL Research Institute / Research Centre: Academic Structure > Molecular and Clinical Sciences Research Institute (MCS)
Journal or Publication Title: Mol Biol Cell
ISSN: 1939-4586
Language: eng
Dates:
DateEvent
15 November 2020Published
12 November 2020Published Online
18 September 2020Accepted
Publisher License: Creative Commons: Attribution 4.0
Projects:
Project IDFunderFunder ID
F32 AR062476NIAMS NIH HHSUNSPECIFIED
R01 AR048155NIAMS NIH HHSUNSPECIFIED
R01 AR071382NIAMS NIH HHSUNSPECIFIED
T32 GM007229NIGMS NIH HHSUNSPECIFIED
108429/Z/15/ZWellcome Trusthttp://dx.doi.org/10.13039/100004440
PubMed ID: 32966160
Web of Science ID: WOS:000590617600007
Go to PubMed abstract
URI: https://openaccess.sgul.ac.uk/id/eprint/112440
Publisher's version: https://doi.org/10.1091/mbc.E20-03-0200

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