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Updated: Apr 11, 2026

Reverse Genetic Approach to Identify Regulators of Pigmentation using Zebrafish
Published on: March 1, 2022
TRPM2 couples cell-autonomous type-I interferon signaling to pigmentation homeostasis
Nutan Sharma1, Abhishek Tanwar1, Changyu Zheng2
1Laboratory of Calciomics and Systemic Pathophysiology (LCSP), Regional Centre for Biotechnology (RCB), Faridabad-121001, Delhi-NCR, India.
None:
Transient Receptor Potential Melastatin 2 (TRPM2), a Ca2+-permeable cation channel, regulates innate and adaptive immunity and has recently been implicated in vitiligo, an autoimmune pigmentary disorder. However, whether TRPM2 exerts cell-autonomous immunoregulatory functions and how such signaling intersects with pigmentation remain unknown. Here, we reveal an unexpected role for TRPM2 as an intrinsic suppressor of pigmentation through type-I interferon (IFN) signaling in melanocytes. Pharmacological inhibition, genetic silencing, and gain-of-function approaches demonstrate that TRPM2 negatively regulates melanogenesis in vitro. Notably, TRPM2-deficient zebrafish and TRPM2-/- mice exhibit enhanced pigmentation in vivo, establishing physiological relevance. Transcriptomic profiling uncovers autonomous activation of the type-I-IFN pathway upon TRPM2 loss, leading to induction of interferon-stimulated gene 15 (ISG15). Mechanistically, ISG15 attenuates global ubiquitination and stabilizes microphthalmia-associated transcription factor (MITF), the master regulator of melanogenesis, thereby promoting pigmentation. Collectively, our findings define a previously unrecognized TRPM2-type-I-IFN-ISG15-MITF signaling axis that functionally integrates cell-autonomous immune surveillance pathways with pigmentary control. Further, it provides a conceptual framework linking type-I interferon signaling to pigmentation homeostasis and pigmentary disorders.
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