Abstract

Human MutS homologue 2 (hMSH2), a crucial element of the highly conserved DNA mismatch repair system, maintains genetic stability in the nucleus of normal cells. Our previous studies indicate that hMSH2 is ectopically expressed on the surface of epithelial tumor cells and recognized by both T cell receptor γδ (TCRγδ) and natural killer group 2 member D (NKG2D) on Vδ2 T cells. Ectopically expressed hMSH2 could trigger a γδ T cell-mediated cytolysis. In this study, we showed that oxidative stress induced ectopic expression of hMSH2 on human renal carcinoma cells. Under oxidative stress, both p38 mitogen-activated protein kinase (MAPK) and c-Jun N-terminal kinase (JNK) pathways have been confirmed to mediate the ectopic expression of hMSH2 through the apoptosis-signaling kinase 1 (ASK1) upstream and activating transcription factor 3 (ATF3) downstream of both pathways. Moreover, renal carcinoma cell-derived interleukin (IL)-18 in oxidative stress was a prominent stimulator for ectopically induced expression of hMSH2, which was promoted by interferon (IFN)-γ as well. Finally, oxidative stress or pretreatment with IL-18 and IFN-γ enhanced γδ T cell-mediated cytolysis of renal carcinoma cells. Our results not only establish a mechanism of ectopic hMSH2 expression in tumor cells but also find a biological linkage between ectopic expression of hMSH2 and activation of γδ T cells in stressful conditions. Because γδ T cells play an important role in the early stage of innate anti-tumor response, γδ T cell activation triggered by ectopically expressed hMSH2 may be an important event in immunosurveillance for carcinogenesis.

Highlights

  • Expressed MutS homologue 2 is a ligand of ␥␦ T cells

  • These results demonstrate that ectopic expression of Human MutS homologue 2 (hMSH2) on the surface of RCC cells is induced in response to oxidative stress

  • Jun N-terminal kinase (JNK) pathways in regulating ectopic expression of hMSH2 in stress, we examined the role of apoptosis-signaling kinase 1 (ASK1), a member of the mitogen-activated protein kinase kinase kinase (MAP3K) family that could activate both JNK and p38 MAPK pathways in response to oxidative stress [35]

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Summary

Background

Results: Oxidative stress induces ectopic expression of hMSH2 on renal carcinoma cells with IL-18 promotion via p38 MAPK and JNK pathways, promoting ␥␦ T cell-mediated lysis of renal tumor cells. We showed that oxidative stress induced ectopic expression of hMSH2 on human renal carcinoma cells. Under oxidative stress, both p38 mitogen-activated protein kinase (MAPK) and c-Jun N-terminal kinase (JNK) pathways have been confirmed to mediate the ectopic expression of hMSH2 through the apoptosis-signaling kinase 1 (ASK1) upstream and activating transcription factor 3 (ATF3) downstream of both pathways. Exogenous IFN-␥ further promoted ectopic expression of hMSH2 on the surface of RCC cells, and ␥␦ T cells produced a high level of IFN-␥ during oxidative stress. Ectopically expressed hMSH2 may act as a candidate molecule of DAMPs recognized by ␥␦ T cells, which indicates that ␥␦ T cells may perform immunosurveillance of hMSH2-bearing tumor cells in an oxidative stress environment

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