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April 26, 2026Cells0 citationsOpen Access

Involvement of TRPA1 in Necrosis of Melanoma Cells via Phospholipase D1

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RNRei NakanoNihon UniversityMKManami KujiNihon UniversityMSMana SugimuraNihon University

Key Points

  • This research investigates how TRPA1 and PLD1 contribute to cell death in melanoma cells under alkaline conditions.
  • Cells were exposed to alkaline pHe (8.1) and the TRPA1 agonist allyl isothiocyanate (AITC) to evaluate effects on viability.
  • Cell death was assessed using propidium iodide and annexin V staining techniques.
  • Pharmacological screening identified PLD1 as a key regulator, supported by siRNA experiments targeting phospholipases.
  • Alkaline pHe and AITC exposure resulted in significant melanoma cell death, characterized by necrosis (propidium iodide-positive, annexin V-negative).
  • TRPA1 activation led to sustained Ca2+ influx, which was disrupted by the TRPA1 inhibitor HC-030031 and calcium removal, reducing cell death.
  • Transfection with PLD1 siRNA reduced AITC-induced cell death, while PLD2, PLD3, and NAPE-PLD siRNAs did not affect cell viability.

Abstract

The tumor microenvironment, including extracellular pH (pHe), has emerged as a key regulator of tumor cellular function. Although extracellular acidification sensing and function are well established, the effect of extracellular alkalinization on cellular functioning remains unclear. Here, we report that transient receptor potential ankyrin 1 (TRPA1) functions as an alkaline sensor and mediator of cell death in melanoma cells. Exposure to alkaline pHe (8.1) or allyl isothiocyanate (AITC), a TRPA1 agonist, significantly reduced melanoma cell viability. We found that cell death was propidium iodide-positive and annexin V-negative, suggesting that pHe or AITC treatment induced necrosis rather than apoptosis. TRPA1 activation induced sustained Ca2+ influx, which was suppressed by either extracellular Ca2+ removal or treatment with the TRPA1 inhibitor, HC-030031, both of which attenuated cell death. Pharmacological screening has identified phosphatidylcholine-specific phospholipase D1 (PLD1) as a positive regulator of cell death. We confirmed that transfection with PLD1 siRNA significantly reduced AITC-induced cell death, whereas PLD2, PLD3, and NAPE-PLD siRNAs had no effect. These observations suggest that the vulnerability of melanoma cells to alkaline pHe is mediated by activation of the TRPA1-PLD1 axis. Thus, TRPA1 and PLD1 are potential targets for therapeutic intervention in melanoma.

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Cite This Study

Nakano et al. (2026) studied this question.

synapsesocial.com/papers/69edacbd4a46254e215b479fhttps://doi.org/10.3390/cells15090760
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