Abstract

GSDMD is the key effector of pyroptosis, but its non-pyroptosis-related functions have seldom been reported. Here, we report that GSDMD is overexpressed in different types of tumours, including head and neck squamous-cell carcinoma, and it promotes the sensitivity of tumour cells to cisplatin. Unexpectedly, the enhanced cisplatin sensitivity is mediated by apoptosis but not pyroptosis, the well-known function of GSDMD. Furthermore, we found that GSDMD can activate the unfolded protein response by promoting the phosphorylation of eIF2α. Mechanistically, we demonstrated that GSDMD can directly bind to eIF2α and enhance the interaction between eIF2α and its upstream kinase PERK, leading to eIF2α phosphorylation. Consequently, the protein levels of ATF-4 were upregulated, downstream apoptosis-related proteins such as CHOP were activated, and apoptosis was induced. Remarkably, activation of endoplasmic-reticulum (ER) stress induced by GSDMD promotes cell apoptosis during cisplatin chemotherapy, thereby increasing the treatment sensitivity of tumours. Therefore, for the first time, our work reveals an unreported nonpyroptotic function of the classic pyroptosis protein GSDMD: it promotes cell apoptosis during cisplatin chemotherapy by inducing eIF2α phosphorylation and ER stress, which are related to the drug sensitivity of tumours. Our study also indicated that GSDMD might serve as a biomarker for cisplatin sensitivity.

Highlights

  • The gasdermin family includes important protein effectors in pyroptosis, a unique type of cell death [1]

  • Our work revealed a new function of gasdermin D (GSDMD): it switch caspase-3-mediated apoptosis-induced chemotherapy promotes the phosphorylation of eIF2α and induces ER stress. drugs to pyroptosis [12]

  • In summary, we proved a new function of the GSDMD protein in cells: it promotes the phosphorylation of eIF2α to induce ER-stress response and enhance sensitivity to cisplatin chemotherapy

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Summary

INTRODUCTION

The gasdermin family includes important protein effectors in pyroptosis, a unique type of cell death [1]. Overactivation can switch found that cisplatin resulted in no significant increase in LDH in the effects of ER stress from adaptive homoeostasis to either control or GSDMD-overexpressing cells. When cells were treated with cisplatin, GSDMD-promoted ER absence of pyroptosis in GSDMD-expressing cells upon cisplatin stress was overactivated and resulted in apoptosis via the ATF-4- treatment, we mutated the original caspase-1 cleavage sequence. Degree of increased LDH by mutated GSDMD was similar as overexpression of GSDME in Hela, which serves as a positive control for cisplatin-induced pyroptosis.

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ETHICS APPROVAL AND CONSENT TO PARTICIPATE
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