Related Experiment Video

Updated: Apr 17, 2026

RhoC GTPase Activation Assay
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RhoC GTPase Activation Assay

Published on: August 22, 2010

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Cell-penetrating TIPE2 peptide effectively suppresses tumor migration and progression via targeting RAC1

Mingsheng Zhao1, Yulan Li2, Jingwen Jia1

  • 1Institute of Immunology and Molecular Medicine, Jining Medical University, Jining, China.

Cellular Signalling
|April 15, 2026
PubMed

Insights

A novel fusion peptide, 9R-TIPE2, effectively penetrates cancer cells to induce tumor cell death and inhibit metastasis. This peptide shows promise for targeted cancer therapies, including hepatocellular carcinoma and lung cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Metastasis is a primary cause of cancer mortality, posing a significant clinical challenge.
  • Limited cell membrane permeability of therapeutic proteins impedes the clinical application of anti-cancer agents.
  • TIPE2, a negative immune regulator, influences inflammation, metabolism, and tumor immunity, indicating its therapeutic potential.

Purpose of the Study:

  • To develop a cell-penetrating fusion peptide for enhanced delivery of TIPE2's anti-cancer functions.
  • To evaluate the efficacy of the 9R-TIPE2 peptide in inhibiting tumor cell death and migration.
  • To assess the in vivo anti-metastatic effects and biosafety of 9R-TIPE2.

Main Methods:

  • Construction of a fusion peptide (9R-TIPE2) combining a cell-penetrating sequence (9R) with the TIPE2 α0 domain.
  • In vitro assessment of cell membrane permeability, cytotoxicity, and anti-tumor activity in HepG2 and A549 cells.
  • In vivo evaluation of anti-metastatic efficacy using a xenograft mouse model with A549 tumors.

Main Results:

  • 9R-TIPE2 demonstrated efficient cell membrane penetration and intracellular activity without significant cytotoxicity.
  • The peptide induced nutrient deprivation-related tumor cell death and suppressed cancer cell migration by inhibiting RAC1-mediated F-actin polymerization and the mTOR pathway.
  • In vivo studies confirmed that 9R-TIPE2 effectively inhibited tumor metastasis in nude mice.

Conclusions:

  • 9R-TIPE2 exhibits excellent membrane permeability and biosafety.
  • The peptide retains TIPE2's biological functions, inducing tumor cell death and suppressing migration both in vitro and in vivo.
  • 9R-TIPE2 represents a promising therapeutic candidate for TIPE2-targeted treatment of various cancers, including hepatocellular carcinoma and lung cancer.

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