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Critical and distinct roles of cell type–specific NF-κB2 in lung cancer
Fan Sun, … , Zhaoxia Qu, Gutian Xiao
Fan Sun, … , Zhaoxia Qu, Gutian Xiao
Published February 22, 2024
Citation Information: JCI Insight. 2024;9(4):e164188. https://doi.org/10.1172/jci.insight.164188.
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Research Article Oncology

Critical and distinct roles of cell type–specific NF-κB2 in lung cancer

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Abstract

Different from the well-studied canonical NF-κB member RelA, the role of the noncanonical NF-κB member NF-κB2 in solid tumors, and lung cancer in particular, is poorly understood. Here we report that in contrast to the tumor-promoting role of RelA, NF-κB2 intrinsic to lung epithelial and tumor cells had no marked effect on lung tumorigenesis and progression. On the other hand, NF-κB2 limited dendritic cell number and activation in the lung but protected lung macrophages and drove them to promote lung cancer through controlling activation of noncanonical and canonical NF-κB, respectively. NF-κB2 was also required for B cell maintenance and T cell activation. The antitumor activity of lymphocyte NF-κB2 was dominated by the protumor function of myeloid NF-κB2; thus, NF-κB2 has an overall tumor-promoting activity. These studies reveal a cell type–dependent role for NF-κB2 in lung cancer and help understand the complexity of NF-κB action and lung cancer pathogenesis for better design of NF-κB–targeted therapy against this deadliest cancer.

Authors

Fan Sun, Yadong Xiao, Steven D. Shapiro, Zhaoxia Qu, Gutian Xiao

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Figure 4

Indispensable role of intrinsic NF-κB2 in T cell antitumor activity.

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Indispensable role of intrinsic NF-κB2 in T cell antitumor activity.
(A)...
(A) Flow cytometry analysis showing increased T cells in the lung of urethane-treated NF-κB2–deficient mice (n = 5). (B) Flow cytometry analysis showing more activated T cells in the lung of NF-κB2–deficient mice treated with urethane (n = 5). (C) Flow cytometry analysis showing decreased activation of NF-κB2–deficient T cells induced by anti-CD3 and anti-CD28 antibodies (n = 4). (D) Flow cytometry analysis showing impaired activation of NF-κB2–deficient T cells by tumor antigen–loaded DCs (n = 4). (E) In vitro tumor cell killing assays showing impaired tumoricidal activity of NF-κB2–deficient T cells activated by tumor antigen-loaded DCs (n = 3). Data are presented as mean ± SEM. *P < 0.05; **P < 0.01 by 2-tailed, unpaired Student’s t test (A–E).

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