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NEDD9 Restrains dsDNA Damage Response during Non-Small Cell Lung Cancer (NSCLC) Progression
Mariya Tikhomirova1, Iuliia Topchu1,2, Aleksandra Mazitova1,3
1Institute of Fundamental Medicine and Biology, Kazan Federal University, 420000 Kazan, Russia.
Abstract:
DNA damaging modalities are the backbone of treatments for non-small cell lung cancer (NSCLC). Alterations in DNA damage response (DDR) in tumor cells commonly contribute to emerging resistance to platinating agents, other targeted therapies, and radiation. The goal of this study is to identify the previously unreported role of NEDD9 scaffolding protein in controlling DDR processes and sensitivity to DNA damaging therapies. Using a siRNA-mediated approach to deplete NEDD9 in a group of human and murine KRAS/TP53-mutant NSCLC cell lines, coupled with a set of cell viability and clonogenic assays, flow cytometry analysis, and Western blotting, we evaluated the effects of NEDD9 silencing on cellular proliferation, DDR and epithelial-to-mesenchymal transition (EMT) signaling, cell cycle, and sensitivity to cisplatin and UV irradiation. Using publicly available NSCLC datasets (TCGA) and an independent cohort of primary NSCLC tumors, subsequent in silico and immunohistochemical (IHC) analyses were performed to assess relevant changes in NEDD9 RNA and protein expression across different stages of NSCLC. The results of our study demonstrate that NEDD9 depletion is associated with the increased tumorigenic capacity of NSCLC cells. These phenotypes were accompanied by significantly upregulated ATM-CHK2 signaling, shifting towards a more mesenchymal phenotype in NEDD9 depleted cells and elevated sensitivity to UV-irradiation. IHC analyses revealed an association between reduced NEDD9 protein expression and a decrease in overall (OS) and progression-free survival (PFS) of the NSCLC patients. These data, for the first time, identified NEDD9 as a negative regulator of ATM kinase activity and related DDR signaling in numerous KRAS/TP53 mutated NSCLC, with its effects on the regulation of DDR-dependent EMT signaling, sensitivity to DNA damaging modalities in tumor cells, and the survival of the patients.
Insights
NEDD9 depletion increases non-small cell lung cancer (NSCLC) cell tumorigenicity and UV sensitivity by upregulating DNA damage response (DDR) signaling. Reduced NEDD9 expression correlates with poorer patient survival, identifying it as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- DNA damaging therapies are crucial for non-small cell lung cancer (NSCLC) treatment.
- Resistance to these therapies often arises from alterations in DNA damage response (DDR).
- The role of NEDD9 scaffolding protein in NSCLC DDR and therapy sensitivity is largely unexplored.
Purpose of the Study:
- To investigate the function of NEDD9 in controlling DDR and sensitivity to DNA damaging agents in NSCLC.
- To determine the impact of NEDD9 depletion on NSCLC cell proliferation, cell cycle, and epithelial-to-mesenchymal transition (EMT).
- To analyze NEDD9 expression in NSCLC patient cohorts and correlate it with clinical outcomes.
Main Methods:
- siRNA-mediated depletion of NEDD9 in human and murine KRAS/TP53-mutant NSCLC cell lines.
- Cell viability, clonogenic assays, flow cytometry, and Western blotting were employed.
- In silico analysis of TCGA datasets and immunohistochemical (IHC) analysis of primary NSCLC tumors.
Main Results:
- NEDD9 depletion enhanced NSCLC cell tumorigenic capacity and UV irradiation sensitivity.
- Silencing NEDD9 led to upregulated ATM-CHK2 signaling and a shift towards a mesenchymal phenotype.
- Reduced NEDD9 protein expression in patients correlated with decreased overall survival (OS) and progression-free survival (PFS).
Conclusions:
- NEDD9 acts as a negative regulator of ATM kinase activity and DDR signaling in KRAS/TP53-mutant NSCLC.
- NEDD9 influences DDR-dependent EMT signaling and sensitivity to DNA damaging therapies.
- NEDD9 expression is a prognostic biomarker for NSCLC patient survival.
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