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Updated: Oct 30, 2025

Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
PRP4 Promotes Skin Cancer by Inhibiting Production of Melanin, Blocking Influx of Extracellular Calcium, and
Muhammad Bilal Ahmed1, Salman Ul Islam1, Young Sup Lee1
1BK21 FOUR KNU Creative Bioresearch Group, School of Life Sciences, Kyungpook National University, Daegu 41566, Korea.
Abstract:
Pre-mRNA processing factor 4B (PRP4) has previously been shown to induce epithelial-mesenchymal transition (EMT) and drug resistance in cancer cell lines. As melanin plays an important photoprotective role in the risk of sun-induced skin cancers, we have investigated whether PRP4 can induce drug resistance and regulate melanin biosynthesis in a murine melanoma (B16F10) cell line. Cells were incubated with a crucial melanogenesis stimulator, alpha-melanocyte-stimulating hormone, followed by transfection with PRP4. This resulted in the inhibition of the production of melanin via the downregulation of adenylyl cyclase-cyclic adenosine 3',5'-monophosphate (AC)-(cAMP)-tyrosinase synthesis signaling pathway. Inhibition of melanin production by PRP4 leads to the promotion of carcinogenesis and induced drug resistance in B16F10 cells. Additionally, PRP4 overexpression upregulated the expression of β-arrestin 1 and desensitized the extracellular calcium-sensing receptor (CaSR), which in turn, inhibited the influx of extracellular Ca2+ ions. The decreased influx of Ca2+ was confirmed by a decreased expression level of calmodulin. We have demonstrated that transient receptor potential cation channel subfamily C member 1 was involved in the influx of CaSR-induced Ca2+ via a decreasing level of its expression. Furthermore, PRP4 overexpression downregulated the expression of AC, decreased the synthesis of cAMP, and modulated the actin cytoskeleton by inhibiting the expression of Ras homolog family member A (RhoA). Our investigation suggests that PRP4 inhibits the production of melanin in B16F10 cells, blocks the influx of Ca2+ through desensitization of CaSR, and modulates the actin cytoskeleton through downregulating the AC-cAMP pathway; taken together, these observations collectively lead to the promotion of skin carcinogenesis.
Insights
Pre-mRNA processing factor 4B (PRP4) inhibits melanin production and calcium (Ca2+) influx in melanoma cells. This promotes skin carcinogenesis and drug resistance by disrupting signaling pathways.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Pre-mRNA processing factor 4B (PRP4) is linked to cancer progression, including epithelial-mesenchymal transition (EMT) and drug resistance.
- Melanin biosynthesis is crucial for photoprotection against sun-induced skin cancers.
Purpose of the Study:
- To investigate the role of PRP4 in regulating melanin biosynthesis and inducing drug resistance in murine melanoma (B16F10) cells.
- To elucidate the molecular mechanisms underlying PRP4's effects on melanogenesis, calcium signaling, and the actin cytoskeleton.
Main Methods:
- Murine melanoma (B16F10) cells were treated with alpha-melanocyte-stimulating hormone and transfected with PRP4.
- Analysis of melanin production, signaling pathway components (AC-cAMP-tyrosinase), β-arrestin 1, CaSR, Ca2+ influx, calmodulin, TRPC1, and RhoA expression.
- Assessment of actin cytoskeleton modulation.
Main Results:
- PRP4 transfection inhibited melanin production by downregulating the AC-cAMP-tyrosinase pathway.
- PRP4 upregulated β-arrestin 1, desensitized CaSR, and inhibited Ca2+ influx, confirmed by decreased calmodulin and TRPC1 expression.
- PRP4 modulated the actin cytoskeleton by downregulating AC, decreasing cAMP, and inhibiting RhoA expression.
Conclusions:
- PRP4 inhibits melanin production and blocks Ca2+ influx via CaSR desensitization in melanoma cells.
- PRP4 modulates the actin cytoskeleton through the AC-cAMP pathway, promoting skin carcinogenesis.
- PRP4 contributes to melanoma progression and drug resistance by disrupting key cellular processes.
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