ITM2B Truncation Promotes Migrasome Formation to Accelerate Renal Cell Carcinoma Growth

Qi-Tao Chen1, Qiao-Ling Huang1, Ming-Zhi Han1

  • 1State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen, Fujian, 361102, China.

Insights

Integral membrane protein 2B (ITM2B) truncation promotes renal cell carcinoma (RCC) growth by enhancing migrasome formation and caspase-7 delivery to macrophages. Hyperuricemia exacerbates this process, offering a potential therapeutic target.

Area of Science:

  • Oncology
  • Cell Biology
  • Biochemistry

Background:

  • Integral membrane protein 2B (ITM2B) functions are mainly studied in neurological disorders, with limited research on its role in cancer.
  • ITM2B undergoes frequent N-terminal cleavage, but the physiological implications of its truncated forms in cancer remain largely unexplored.

Purpose of the Study:

  • To investigate the role of ITM2B truncation in renal cell carcinoma (RCC) progression.
  • To elucidate the mechanism by which ITM2B truncation influences migrasome formation and cellular crosstalk in RCC.

Main Methods:

  • Analysis of ITM2B truncation in RCC cells and tissues.
  • Investigation of ITM2B truncation's effect on migrasome formation and content (e.g., caspase-7).
  • Assessment of macrophage uptake of migrasomes and subsequent IL-6 secretion.
  • Correlation of hyperuricemia with ITM2B cleavage and RCC progression.

Main Results:

  • ITM2B N-terminal truncation promotes migrasome swelling and formation in RCC cells by recruiting TSPAN4.
  • Truncated ITM2B facilitates the sorting of active caspase-7 into migrasomes, promoting migracytosis.
  • Macrophage uptake of caspase-7-enriched migrasomes induces IL-6 secretion, creating a feedback loop that accelerates RCC growth.
  • Hyperuricemia enhances ITM2B cleavage, worsening RCC progression via the ITM2B truncation-migrasome axis.
  • Increased ITM2B truncations are observed in RCC tissues and patient urine, correlating with disease presence.

Conclusions:

  • ITM2B truncation plays a critical role in RCC pathogenesis by modulating migrasome formation and facilitating caspase-7 transfer to macrophages.
  • The ITM2B truncation-migrasome pathway, influenced by hyperuricemia, represents a novel mechanism driving RCC progression.
  • ITM2B truncation-enriched migrasomes in urine may serve as a potential diagnostic biomarker for RCC.

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