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B7-H3-Induced Signaling in Lung Adenocarcinoma Cell Lines with Divergent Epidermal Growth Factor Receptor Mutation
Meng Ding1, Haixiu Liao1, Nannan Zhou1
1Department of Laboratory Medicine, Second Hospital of Anhui Medical University, 678 Furong Road, Hefei, Anhui 230601, China.
Abstract:
The cosignal molecule B7-H3 is gaining attention due to its abnormal expression and abundant signal transduction in many types of malignancies. B7-H3-induced signaling includes at least three cascades: PI3K/AKT, JAK2/STAT3, and Raf/MEK/ERK1/2, which are also involved in epidermal growth factor receptor- (EGFR-) triggered signaling in lung adenocarcinoma cells. However, the correlation between B7-H3-induced signaling and EGFR signaling, and between B7-H3-targeted immunotherapy and EGFR-targeted therapy in lung adenocarcinoma, remains to be elucidated. Herein we find that knockout of B7-H3 gene decreased cell survival and increased EGFR-tyrosine kinase inhibitor gefitinib susceptibility of both H3255 and HCC827 cells, two lung adenocarcinoma cell lines harboring EGFR L858R (exon 21) and Del E746-A750 (exon 19) mutations, respectively. B7-H3 deletion resulted in dramatic reduction of phosphorylation level of AKT and STAT3 in H3255 cells while having mild-to-moderate suppression on AKT, STAT3, and ERK1/2 in HCC827 cells. Gefitinib had similar effects with B7-H3 deletion both in H3255 and HCC827 cells. Furthermore, B7-H3 ablation had significant synergistic effects with gefitinib in HCC827 cells. Collectively, our study reveals B7-H3-induced signaling in lung adenocarcinoma cell lines with divergent EGFR mutations, and a translational potential of combined targeted therapy of B7-H3 and EGFR in lung adenocarcinoma with EGFR Del E746-A750 mutation.
Insights
Targeting B7-H3 in lung adenocarcinoma reduces cell survival and enhances EGFR inhibitor gefitinib effectiveness. Combining B7-H3 and EGFR therapies shows promise, especially for EGFR Del E746-A750 mutations.
Area of Science:
- Oncology
- Molecular Biology
- Immunotherapy
Background:
- B7-H3 is a co-signaling molecule with abnormal expression in many cancers.
- B7-H3 and EGFR signaling pathways overlap in lung adenocarcinoma.
- The interplay between B7-H3 and EGFR signaling and their therapeutic implications are not fully understood.
Purpose of the Study:
- To investigate the correlation between B7-H3 and EGFR signaling in lung adenocarcinoma.
- To evaluate the impact of B7-H3 gene knockout on lung adenocarcinoma cell lines with EGFR mutations.
- To explore the potential of combined B7-H3 and EGFR targeted therapy.
Main Methods:
- Utilized gene knockout of B7-H3 in lung adenocarcinoma cell lines (H3255 and HCC827) with distinct EGFR mutations.
- Assessed cell survival and susceptibility to EGFR tyrosine kinase inhibitor gefitinib.
- Analyzed signaling pathway phosphorylation levels (AKT, STAT3, ERK1/2) after B7-H3 knockout and gefitinib treatment.
Main Results:
- B7-H3 knockout decreased cell survival and increased gefitinib sensitivity in both cell lines.
- B7-H3 deletion differentially affected AKT, STAT3, and ERK1/2 phosphorylation.
- Gefitinib mimicked B7-H3 deletion effects, and combined therapy showed synergistic effects in HCC827 cells.
Conclusions:
- B7-H3 signaling pathways are active in lung adenocarcinoma cell lines with varying EGFR mutations.
- Combined B7-H3 and EGFR targeted therapy holds translational potential for lung adenocarcinoma, particularly with EGFR Del E746-A750 mutations.
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