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Updated: Jun 23, 2026

Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
{alpha}MSH and Cyclic AMP elevating agents control melanosome pH through a protein kinase A-independent mechanism
Yann Cheli1, Flavie Luciani, Mehdi Khaled
1From INSERM, U895, Centre Méditerranéen de Médecine Moléculaire (C3M), Equipe 1, Biology and Pathologies of Melanocytes, F-06204 Nice Cedex 3, France.
Abstract:
Melanins are synthesized in melanocytes within specialized organelles called melanosomes. Numerous studies have shown that the pH of melanosome plays a key role in the regulation of melanin synthesis. However, until now, acute regulation of melanosome pH by a physiological stimulus has never been demonstrated. In the present study, we show that the activation of the cAMP pathway by alphaMSH or forskolin leads to an alkalinization of melanosomes and a concomitant regulation of vacuolar ATPases and ion transporters of the solute carrier family. The solute carrier family members include SLC45A2, which is mutated in oculocutaneous albinism type IV, SLC24A4 and SLC24A5, proteins implicated in the control of eye, hair, and skin pigmentation, and the P protein, encoded by the oculocutaneous albinism type II locus. Interestingly, H89, a pharmacological inhibitor of protein kinase A (PKA), prevents the cAMP-induced pigmentation and induces acidification of melanosomes. The drastic depigmenting effect of H89 is not due to an inhibition of tyrosinase expression. Indeed, H89 blocks the induction of melanogenesis induced by LY294002, a potent inhibitor of the PI 3-kinase pathway, without any effect on tyrosinase expression. Furthermore, PKA is not involved in the inhibition of pigmentation promoted by H89 because LY294002 induces pigmentation independently of PKA. Also, other PKA inhibitors do not affect pigmentation. Taken together, our results strengthen the support for a key role of melanosome pH in the regulation of melanin synthesis and, for the first time, demonstrate that melanosome pH is regulated by cAMP and alphaMSH. Notably, these are both mediators of the response to solar UV radiation, the main physiological stimulus of skin pigmentation.
Insights
Melanosome pH acutely regulates melanin synthesis. The cAMP pathway, activated by alpha-melanocyte-stimulating hormone (alphaMSH), alkalinizes melanosomes, influencing pigmentation and ion transporters.
Area of Science:
- Cell Biology
- Biochemistry
- Dermatology
Background:
- Melanin synthesis occurs in melanosomes within melanocytes.
- Melanosome pH is crucial for regulating melanin production.
- Acute pH regulation by physiological stimuli remained uncharacterized.
Purpose of the Study:
- To investigate the acute regulation of melanosome pH by physiological stimuli.
- To elucidate the role of the cAMP pathway in melanosome pH control.
- To identify key proteins involved in cAMP-mediated melanosome pH modulation.
Main Methods:
- Utilized alpha-melanocyte-stimulating hormone (alphaMSH) and forskolin to activate the cAMP pathway.
- Employed H89, a protein kinase A (PKA) inhibitor, and LY294002, a PI 3-kinase inhibitor.
- Monitored melanosome pH changes and tyrosinase expression.
Main Results:
- cAMP pathway activation led to melanosome alkalinization and regulated vacuolar ATPases and solute carrier family transporters (SLC45A2, SLC24A4, SLC24A5).
- H89 inhibited cAMP-induced pigmentation, caused melanosome acidification, and blocked LY294002-induced melanogenesis without affecting tyrosinase expression.
- PKA was not involved in H89's inhibitory effect on pigmentation.
Conclusions:
- Demonstrated for the first time that melanosome pH is acutely regulated by the cAMP pathway and alphaMSH.
- Established a link between melanosome pH, ion transport, and melanin synthesis regulation.
- Highlighted the significance of these findings in the context of UV radiation-induced skin pigmentation.
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