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Author Spotlight: Flow Cytometric Determination of Pyroptosis in Avian Cells
Published on: May 31, 2024
USP48 Stabilizes Gasdermin E to Promote Pyroptosis in Cancer
Yidan Ren1, Maoxiao Feng1, Xiaodong Hao1
1Department of Clinical Laboratory, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, China.
Abstract:
Pyroptosis is a type of programmed cell death characterized by the activation of inflammatory caspases and the cleavage of gasdermin proteins. Pyroptosis can suppress tumor development and induce antitumor immunity, and activating pyroptosis is a potential treatment strategy for cancer. To uncover approaches to harness the anticancer effects of pyroptosis, we aimed to identify regulators of pyroptosis in cancer. A CRISPR-Cas9 screen identified that loss of USP48, a deubiquitinating enzyme, significantly inhibited cell pyroptosis. USP48 promoted pyroptosis by stabilizing gasdermin E (GSDME). USP48 bound GSDME and removed K48-linked ubiquitination at positions K120 and K189. Clinical tissue testing confirmed that the expression of USP48 positively correlated with GSDME and pyroptosis-related factors. Single-cell sequencing showed that the functions of T cells and tumor-associated macrophages in the tumor microenvironment were inhibited after USP48 knockout. Finally, overexpression of USP48 enhanced the therapeutic efficacy of programmed cell death protein 1 inhibitors in tumors in mouse models. Together, these findings define a pyroptosis regulation pathway and indicate that pharmacologic activation of USP48 may provide an effective strategy to sensitize cancer cells to pyroptosis and improve response to immunotherapy.
Significance:
USP48 promotes pyroptosis by deubiquitinating GSDME and enhances antitumor immunity, indicating that increasing USP48 activity may be a future therapeutic strategy for treating cancer.
Insights
USP48, a deubiquitinating enzyme, promotes pyroptosis by stabilizing GSDME, enhancing antitumor immunity. Activating USP48 may offer a new cancer treatment strategy by sensitizing cells to immunotherapy.
Area of Science:
- Oncology
- Immunology
- Cell Biology
Background:
- Pyroptosis is programmed cell death that suppresses tumors and induces antitumor immunity.
- Activating pyroptosis is a promising cancer treatment strategy.
- Identifying regulators of pyroptosis is crucial for harnessing its anticancer effects.
Purpose of the Study:
- To identify regulators of pyroptosis in cancer.
- To investigate the role of USP48 in pyroptosis and cancer.
- To explore USP48 as a potential therapeutic target for cancer treatment.
Main Methods:
- CRISPR-Cas9 screening to identify pyroptosis regulators.
- Assessing USP48's effect on gasdermin E (GSDME) stability and ubiquitination.
- Analyzing clinical tissue data and single-cell sequencing.
- Evaluating USP48's impact on immunotherapy efficacy in mouse models.
Main Results:
- Loss of USP48 significantly inhibited pyroptosis.
- USP48 stabilizes GSDME by removing K48-linked ubiquitination.
- USP48 expression correlates with GSDME and pyroptosis markers in clinical tissues.
- USP48 knockout inhibited T cell and macrophage function in the tumor microenvironment.
- USP48 overexpression enhanced the efficacy of PD-1 inhibitors in mouse tumor models.
Conclusions:
- USP48 promotes pyroptosis and enhances antitumor immunity by deubiquitinating GSDME.
- USP48 is a key regulator of pyroptosis in cancer.
- Pharmacologic activation of USP48 may sensitize cancer cells to pyroptosis and improve immunotherapy response.
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