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Proinflammatory GSDMD activation in live macrophages and DLBCL cells marks cognate interactions and better prognosis
Xue Kong1, Zijun Y Xu-Monette1, Zhenming Xu2
1Hematopathology Division and Department of Pathology, Duke University Medical Center, Durham, NC.
Abstract:
Pyroptosis is a form of programmed cell death characterized by the cleavage of the gasdermin (GSDM) family proteins that form pores in the plasma membrane, cell rupture, and the release of proinflammatory cytokines. In this study, we performed immunohistochemistry for cleaved gasdermin D (GSDMD), gasdermin E (GSDME) N-terminus, and gasdermin C (GSDMC) in 2 different cohorts of diffuse large B-cell lymphoma (DLBCL) and analyzed the impact of GSDM expression on prognosis and immunity. The results showed frequent cleaved GSDMD (N-terminal) expression. Only cytoplasmic GSDMD N-terminal expression correlated with significantly better patient survival in the 2 cohorts. In contrast, GSDME was mainly expressed in the vascular endothelium, and correlated with significantly adverse prognostic effect. Correlating with the multiplex fluorescent immunohistochemistry results, we found that cytoplasmic GSDMD N-terminal expression was associated with increased CD38+ (activated) M1 macrophages in both cohorts, cognate interactions between live DLBCL cells and activated M1 macrophages (and T cells), and lower PD-1/PD-L1 expression in the analyzed cases. In contrast, T-cell pyroptosis, lymphoma cell-resistance to cell death, and phagocytosis by M2 macrophages were observed in tissues with predominantly nuclear GSDMD N-terminal expression. Bulk gene expression profiling and deconvolution analysis revealed associations of cytoplasmic GSDMD N-terminal expression with downregulation of "Don't eat me"-signaling genes, upregulation of many RNA genes, decreased frequency of "inflammatory" lymphoma microenvironment subtype, increased frequencies of prognostically favorable cell states and ecotypes, and decreased frequency of T-cell exhaustion state. In summary, this study showed distinct cellular and subcellular patterns of 3 GSDM proteins and their associated immune response phenotypes and prognostic effects, with implications for novel therapeutic strategies for B-cell lymphoma.
Insights
Cytoplasmic gasdermin D (GSDMD) expression in diffuse large B-cell lymphoma (DLBCL) predicts better survival by promoting anti-tumor immunity. Nuclear GSDMD indicates poor prognosis, highlighting distinct pyroptosis roles in DLBCL.
Area of Science:
- Cell Biology
- Immunology
- Oncology
Background:
- Pyroptosis, a programmed cell death, involves gasdermin (GSDM) protein cleavage, membrane pore formation, and cytokine release.
- Diffuse large B-cell lymphoma (DLBCL) is an aggressive non-Hodgkin lymphoma with variable prognoses.
Purpose of the Study:
- To investigate the prognostic and immune impact of cleaved GSDMD, GSDME, and GSDMC in DLBCL.
- To elucidate the distinct roles of GSDMD subcellular localization in DLBCL pathogenesis and immune microenvironment.
Main Methods:
- Immunohistochemistry for cleaved GSDMD, GSDME-N-terminal, and GSDMC in two DLBCL cohorts.
- Multiplex fluorescent immunohistochemistry (mfIHC) to analyze immune cell interactions.
- Bulk gene expression profiling and deconvolution analysis.
Main Results:
- Cytoplasmic GSDMD-N-terminal expression correlated with significantly better patient survival.
- Nuclear GSDMD-N-terminal expression was associated with T cell pyroptosis, lymphoma cell resistance to death, and M2 macrophage phagocytosis.
- Cytoplasmic GSDMD-N-terminal expression linked to increased M1 macrophages, direct tumor-immune cell interactions, and favorable immune microenvironment signatures.
Conclusions:
- Distinct cellular and subcellular patterns of GSDMD proteins influence immune response phenotypes and prognostic outcomes in DLBCL.
- Cytoplasmic GSDMD-N-terminal expression represents a favorable prognostic biomarker in DLBCL.
- Findings suggest novel therapeutic strategies targeting pyroptosis pathways in B-cell lymphoma.
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