H-Ras regulation of TRAIL death receptor mediated apoptosis
Jun-Jie Chen1, William P Bozza2, Xu Di2
1Division of Therapeutic Proteins, Office of Biotechnology Products, Center for Drug Evaluation and Research, Food and Drug Administration, Bethesda, Maryland, United States; Tumor Research Laboratory, E-Da Hospital, Kaohsiung City, Taiwan.
Abstract:
TNF-related apoptosis-inducing ligand (TRAIL) induces apoptosis through the death receptors (DRs) 4 and/or 5 expressed on the cell surface. Multiple clinical trials are underway to evaluate the antitumor activity of recombinant human TRAIL and agonistic antibodies to DR4 or DR5. However, their therapeutic potential is limited by the high frequency of cancer resistance. Here we provide evidence demonstrating the role of H-Ras in TRAIL receptor mediated apoptosis. By analyzing the genome wide mRNA expression data of the NCI60 cancer cell lines, we found that H-Ras expression was consistently upregulated in TRAIL-resistant cell lines. By contrast, no correlation was found between TRAIL sensitivity and K-Ras expression levels or their mutational profiles. Notably, H-Ras upregulation associated with a surface deficiency of TRAIL death receptors. Selective inhibition of H-Ras activity in TRAIL-resistant cells restored the surface expression of both DR4 and DR5 without changing their total protein levels. The resulting cells became highly susceptible to both TRAIL and agonistic DR5 antibody, whereas K-Ras inhibition had little or no effect on TRAIL-induced apoptosis, indicating H-Ras plays a distinct role in the regulation of TRAIL death receptors. Further studies are warranted to determine the therapeutic potential of H-Ras-specific inhibitors in combination with TRAIL receptor agonists.
Insights
H-Ras upregulation drives cancer resistance to TRAIL-induced apoptosis by reducing death receptor surface expression. Inhibiting H-Ras restores TRAIL sensitivity, offering a potential therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- TNF-related apoptosis-inducing ligand (TRAIL) triggers apoptosis via death receptors (DRs) 4 and 5.
- Clinical trials explore TRAIL and DR4/DR5 agonists for cancer therapy.
- Cancer resistance to TRAIL therapy is a significant clinical challenge.
Purpose of the Study:
- To investigate the role of H-Ras in TRAIL resistance.
- To identify mechanisms underlying TRAIL resistance in cancer cells.
Main Methods:
- Analysis of NCI60 cancer cell line genome-wide mRNA expression data.
- Assessment of H-Ras and K-Ras expression and mutational profiles.
- Evaluation of TRAIL sensitivity following selective H-Ras or K-Ras inhibition.
Main Results:
- H-Ras was upregulated in TRAIL-resistant cell lines, unlike K-Ras.
- H-Ras upregulation correlated with reduced surface expression of DR4 and DR5.
- Selective H-Ras inhibition restored DR4/DR5 surface expression and TRAIL sensitivity.
Conclusions:
- H-Ras plays a distinct role in regulating TRAIL death receptor surface expression.
- Targeting H-Ras may overcome TRAIL resistance in cancer.
- Combination therapy with H-Ras inhibitors and TRAIL agonists warrants further investigation.
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