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May 20, 2026ACS Chemical Biology0 citations

Ectopic Tyrosinase Perturbs Cellular Iron Homeostasis

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HKHyoseok KimKNKosuke NishioMAMasahiro Abo

Key Points

  • The study aims to investigate how ectopic expression of tyrosinase affects cellular iron homeostasis.
  • Proteomics analysis to assess changes in cellular iron levels.
  • Biochemical assays to evaluate iron homeostasis pathways and signaling mechanisms.
  • Ectopic tyrosinase expression leads to significant intracellular iron depletion.
  • Activation of iron-regulatory protein 2 (IRP2) signaling and ferritinophagy pathways observed.
  • Iron depletion primarily due to strong metal-chelating properties of ectopic melanin.

Abstract

Tyrosinase is an oxidase that catalyzes the conversion of tyrosine into reactive quinones, leading to the production of melanin. Under physiological conditions, tyrosinase-driven melanogenesis is confined to specialized organelles known as melanosomes. Nevertheless, ectopic or cytosolic expression of tyrosinase has been observed in a range of pathological conditions and widely exploited for cell engineering and proximity protein labeling applications. The present proteomics and biochemical study reports that ectopic tyrosinase expression induces intracellular iron depletion, thereby activating iron homeostasis pathways including IRP2 signaling and ferritinophagy. Mechanistically, this iron depletion is primarily attributable to sequestration through the strong metal-chelating properties of ectopic melanin. These findings reveal an unintended impact of tyrosinase on cellular iron metabolism and highlight the need to consider iron homeostasis when tyrosinase is employed outside its native organellar environment.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6a0d50f3f03e14405aa9d14chttps://doi.org/10.1021/acschembio.6c00222
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