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Nerofe+ldDox releases c-Jun from nuclear ST2 to reprogram the immune microenvironment in mtKRAS tumors
Background/Objectives:
Mutant KRAS (mtKRAS) tumors are highly immunosuppressive, largely through secretion of IL-10 and TGF-β2, which prevent immune cell infiltration. Nerofe (dTCApFs), a peptide derivative of Tumor Cell Apoptosis Factor, induces endoplasmic reticulum stress and modulates immune signaling through the T1/ST2 receptor, which is overexpressed in mtKRAS tumors. We evaluated whether combining Nerofe with low-dose doxorubicin (ldDox) could remodel the immune microenvironment and overcome tumor immunosuppression.
Methods:
In vitro experiments were performed in PANC-1 pancreatic adenocarcinoma cells harboring a KRAS mutation. Cytokine expression, c-Jun activity, and c-Jun-ST2 binding were measured by western blotting, immunocytochemistry, and immunoprecipitation. In a clinical trial (NCT05661201), patients with mtKRAS tumors received weekly Nerofe (288 mg/m²) plus ldDox (8 mg/m²). Tumor biopsies were analyzed by immunohistochemistry before treatment and after 7 weeks.
Results:
Nerofe+ldDox treatment increased IL-2 and suppressed IL-10 in PANC-1 cells, reversing the immunosuppressive cytokine profile. Patient biopsies confirmed these effects, showing higher IL-2, lower IL-10, and increased infiltration of NK cells, CD8+ cytotoxic T lymphocytes, and CD4+ helper T cells. KRAS protein levels were reduced in post-treatment biopsies. Mechanistically, Nerofe+ldDox elevated total c-Jun protein but reduced phosphorylation at Ser63 and Ser73. Co-immunoprecipitation showed that c-Jun was bound to nuclear ST2 under basal conditions; this complex was disrupted within 3 h of treatment, releasing c-Jun to activate IL-2 and miR-217 transcription before re-forming after 24 h. This transient release corresponds to the early induction of IL-2 and later reduction in KRAS levels.
Conclusions:
Nerofe+ldDox reprograms the immune microenvironment of mtKRAS tumors by releasing c-Jun from inhibitory nuclear ST2, enabling expression of IL-2 and miR-217. This "nuclear immunomodulation" promotes immune cell infiltration and downregulates KRAS expression, highlighting Nerofe+ldDox as a promising therapeutic approach for mtKRAS-driven cancers.
Insights
Nerofe plus low-dose doxorubicin (ldDox) combination therapy effectively remodels the tumor microenvironment in mutant KRAS (mtKRAS) cancers. This treatment promotes immune cell infiltration and reduces KRAS expression, offering a promising new therapeutic strategy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Mutant KRAS (mtKRAS) tumors create an immunosuppressive environment by secreting IL-10 and TGF-β2, hindering immune cell infiltration.
- Nerofe, a peptide derivative, induces endoplasmic reticulum stress and modulates immune signaling via the T1/ST2 receptor, which is often overexpressed in mtKRAS tumors.
Purpose of the Study:
- To evaluate the efficacy of combining Nerofe with low-dose doxorubicin (ldDox) in remodeling the immune microenvironment and overcoming immunosuppression in mtKRAS tumors.
Main Methods:
- In vitro studies used PANC-1 cells to assess cytokine expression, c-Jun activity, and c-Jun-ST2 binding.
- A clinical trial (NCT05661201) involved patients with mtKRAS tumors receiving weekly Nerofe and ldDox.
- Tumor biopsies were analyzed using immunohistochemistry before and after 7 weeks of treatment.
Main Results:
- Nerofe+ldDox treatment increased IL-2 and decreased IL-10 in PANC-1 cells, reversing the immunosuppressive cytokine profile.
- Patient biopsies showed increased IL-2, decreased IL-10, and enhanced infiltration of NK cells, CD8+ T cells, and CD4+ T cells.
- Treatment led to reduced KRAS protein levels and a transient release of c-Jun from nuclear ST2, facilitating IL-2 and miR-217 transcription.
Conclusions:
- Nerofe+ldDox combination therapy reprograms the immune microenvironment of mtKRAS tumors through "nuclear immunomodulation."
- This approach promotes immune cell infiltration and downregulates KRAS expression.
- Nerofe+ldDox represents a promising therapeutic strategy for mtKRAS-driven cancers.
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