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February 9, 2026Clinical and Experimental Medicine0 citationsOpen Access

USP36 inhibits ferroptosis of melanoma cells by stabilizing APEX1

LZLei ZhangYZYong ZhangHYHongwu Yin

Key Points

  • The research investigates how USP36 affects ferroptosis in melanoma cells, focusing on its interaction with APEX1.
  • Used A375 and SK-MEL-28 melanoma cell lines to assess USP36 expression and function.
  • Conducted experiments with overexpression and knockdown of USP36 to evaluate effects on ferroptosis.
  • Employed co-immunoprecipitation and ubiquitination assays to study USP36-APEX1 interaction.
  • Utilized USP36-deficient xenograft models to analyze tumor growth and ferroptosis sensitivity.
  • Erastin treatment downregulated USP36 in melanoma cells.
  • Overexpression of USP36 reduced ferroptosis sensitivity.
  • Knockdown of APEX1 negated USP36's protective effects against ferroptosis.
  • USP36-deficient tumors showed decreased proliferation and increased ferroptosis.

Abstract

Cutaneous melanoma is an aggressive skin cancer characterized by high rates of recurrence and mortality, especially in its advanced stages. Ferroptosis, a distinct form of programmed cell death, has emerged as a promising therapeutic strategy for cancer. Nevertheless, the regulatory mechanisms underlying ferroptosis in melanoma remain poorly defined. In this study, we aimed to elucidate the role of USP36, a deubiquitinating enzyme that removes ubiquitin from substrate proteins, in the ferroptosis of melanoma cells. Using A375 and SK-MEL-28 melanoma cells treated with the ferroptosis inducer erastin, we analyzed USP36 expression and evaluated its functional role through both overexpression and knockdown experiments. Co-immunoprecipitation and ubiquitination assays demonstrated that USP36 stabilizes APEX1 through the cleavage of its K48-linked ubiquitin chains. We further employed USP36-deficient xenograft models to assess tumor growth and ferroptosis sensitivity. Our results indicate that erastin downregulates USP36, whereas overexpression of USP36 suppresses ferroptosis. Importantly, knockdown of APEX1 abolished the anti-ferroptotic effect of USP36. In addition, USP36-deficient tumors exhibited reduced proliferation and enhanced ferroptosis. Collectively, these findings establish USP36 as an oncogene in melanoma that inhibits ferroptosis through stabilization of APEX1. Therefore, targeting the USP36-APEX1 axis may represent a novel therapeutic approach for melanoma treatment.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69897983f0ec2af6756e733ahttps://doi.org/10.1007/s10238-026-02077-8
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