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Asah2 Represses the p53-Hmox1 Axis to Protect Myeloid-Derived Suppressor Cells from Ferroptosis
Huabin Zhu1,2,3, John D Klement1,2,3, Chunwan Lu1,2,3
1Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta, GA 30912.
Abstract:
Myeloid-derived suppressor cells (MDSCs) are immune suppressive cells that massively accumulate under pathological conditions to suppress T cell immune response. Dysregulated cell death contributes to MDSC accumulation, but the molecular mechanism underlying this cell death dysregulation is not fully understood. In this study, we report that neutral ceramidase (N-acylsphingosine amidohydrolase [ASAH2]) is highly expressed in tumor-infiltrating MDSCs in colon carcinoma and acts as an MDSC survival factor. To target ASAH2, we performed molecular docking based on human ASAH2 protein structure. Enzymatic inhibition analysis of identified hits determined NC06 as an ASAH2 inhibitor. Chemical and nuclear magnetic resonance analysis determined NC06 as 7-chloro-2-(3-chloroanilino)pyrano[3,4-e][1,3]oxazine-4,5-dione. NC06 inhibits ceramidase activity with an IC50 of 10.16-25.91 μM for human ASAH2 and 18.6-30.2 μM for mouse Asah2 proteins. NC06 induces MDSC death in a dose-dependent manner, and inhibition of ferroptosis decreased NC06-induced MDSC death. NC06 increases glutathione synthesis and decreases lipid reactive oxygen species to suppress ferroptosis in MDSCs. Gene expression profiling identified the p53 pathway as the Asah2 target in MDSCs. Inhibition of Asah2 increased p53 protein stability to upregulate Hmox1 expression to suppress lipid reactive oxygen species production to suppress ferroptosis in MDSCs. NC06 therapy increases MDSC death and reduces MDSC accumulation in tumor-bearing mice, resulting in increased activation of tumor-infiltrating CTLs and suppression of tumor growth in vivo. Our data indicate that ASAH2 protects MDSCs from ferroptosis through destabilizing p53 protein to suppress the p53 pathway in MDSCs in the tumor microenvironment. Targeting ASAH2 with NC06 to induce MDSC ferroptosis is potentially an effective therapy to suppress MDSC accumulation in cancer immunotherapy.
Insights
Myeloid-derived suppressor cells (MDSCs) accumulate in cancer, suppressing immune responses. Researchers found that targeting neutral ceramidase (ASAH2) with NC06 induces MDSC death via ferroptosis, reducing tumor growth and enhancing anti-tumor immunity.
Area of Science:
- Immunology
- Cancer Biology
- Biochemistry
Background:
- Myeloid-derived suppressor cells (MDSCs) are key immune suppressors that accumulate in pathological conditions, hindering anti-tumor immune responses.
- Dysregulated cell death mechanisms contribute to MDSC accumulation, but the precise molecular regulators remain incompletely understood.
- Neutral ceramidase (N-acylsphingosine amidohydrolase [ASAH2]) is implicated as a potential survival factor for MDSCs in the tumor microenvironment.
Purpose of the Study:
- To investigate the role of neutral ceramidase (ASAH2) in MDSC survival and accumulation.
- To identify and characterize a novel inhibitor of ASAH2 for therapeutic targeting of MDSCs.
- To elucidate the molecular mechanisms by which ASAH2 inhibition impacts MDSC death and anti-tumor immunity.
Main Methods:
- Molecular docking was employed to identify potential inhibitors of human ASAH2.
- Enzymatic inhibition assays and chemical analyses were used to characterize the identified inhibitor, NC06.
- MDSC death assays, ferroptosis inhibition studies, gene expression profiling, and in vivo tumor models were utilized to assess NC06 efficacy and mechanism.
Main Results:
- ASAH2 is highly expressed in tumor-infiltrating MDSCs and functions as a survival factor.
- NC06, a novel ASAH2 inhibitor, effectively induces MDSC death through ferroptosis.
- NC06 therapy in tumor-bearing mice reduces MDSC accumulation, enhances CTL activation, and suppresses tumor growth by targeting the ASAH2/p53/Hmox1 axis.
Conclusions:
- ASAH2 protects MDSCs from ferroptosis by destabilizing p53, thereby suppressing the p53 pathway within the tumor microenvironment.
- Targeting ASAH2 with NC06 to induce MDSC ferroptosis represents a promising therapeutic strategy to enhance cancer immunotherapy.
- This study reveals a novel mechanism of MDSC regulation and a potential therapeutic avenue for overcoming immune suppression in cancer.
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