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The down-regulated ING5 expression in lung cancer: a potential target of gene therapy
Shuang Zhao1, Xue-Feng Yang1, Dao-Fu Shen1
1Cancer Center, Key Laboratory of Brain and Spinal Cord Injury of Liaoning Province, and Animal Center, The First Affiliated Hospital of Jinzhou Medical University, Jinzhou, 121001, China.
Abstract:
ING5 can interact with p53, thereby inhibiting cell growth and inducing apoptosis. We found that ING5 overexpression not only inhibited proliferation, migration, and invasion, but also induced G2 arrest, differentiation, autophagy, apoptosis, glycolysis and mitochondrial respiration in lung cancer cells. ING5 transfection up-regulated the expression of Cdc2, ATG13, ATG14, Beclin-1, LC-3B, AIF, cytochrome c, Akt1/2/3, ADFP, PFK-1 and PDPc, while down-regulated the expression of Bcl-2, XIAP, survivin,β-catenin and HXK1. ING5 transfection desensitized cells to the chemotherapy of MG132, paclitaxel, and SAHA, which paralleled with apoptotic alteration. ING5 overexpression suppressed the xenograft tumor growth by inhibiting proliferation and inducing apoptosis. ING5 expression level was significantly higher in normal tissue than that in lung cancer at both protein and mRNA levels. Nuclear ING5 expression was positively correlated with ki-67 expression and cytoplasmic ING5 expression. Cytoplasmic ING5 expression was positively associated with lymph node metastasis, and negatively with age, lymphatic invasion or CPP32 expression. ING5 expression was different in histological classification: squamous cell carcinoma > adenocarcinoma > large cell carcinoma > small cell carcinoma. Taken together, our data suggested that ING5 downregulation might involved in carcinogenesis, growth, and invasion of lung cancer and could be considered as a promising marker to gauge the aggressiveness of lung cancer. It might be employed as a potential target for gene therapy of lung cancer.
Insights
ING5 (Inhibitor of Growth 5) overexpression inhibits lung cancer cell growth, migration, and invasion while inducing apoptosis. Downregulation of ING5 may contribute to lung cancer development and progression.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The role of ING5 in lung cancer pathogenesis is not fully understood.
- Understanding ING5's function is crucial for developing novel therapeutic strategies.
Purpose of the Study:
- To investigate the functional role of ING5 in lung cancer.
- To explore ING5 as a potential therapeutic target and prognostic marker.
Main Methods:
- In vitro studies using lung cancer cell lines with ING5 overexpression.
- Analysis of cell proliferation, migration, invasion, cell cycle, apoptosis, glycolysis, and mitochondrial respiration.
- Western blot and mRNA expression analysis of key proteins.
- In vivo xenograft tumor models.
- Correlation analysis of ING5 expression with clinicopathological features.
Main Results:
- ING5 overexpression inhibited lung cancer cell proliferation, migration, invasion, glycolysis, and mitochondrial respiration, while inducing G2 arrest, differentiation, autophagy, and apoptosis.
- ING5 transfection altered the expression of numerous genes involved in cell cycle regulation, apoptosis, and metabolism.
- ING5 overexpression suppressed xenograft tumor growth.
- ING5 expression was significantly lower in lung cancer tissues compared to normal tissues.
- Cytoplasmic ING5 expression correlated with lymph node metastasis and histological subtypes.
Conclusions:
- ING5 downregulation is implicated in lung cancer carcinogenesis, growth, and invasion.
- ING5 acts as a tumor suppressor in lung cancer.
- ING5 is a potential prognostic marker for lung cancer aggressiveness and a target for gene therapy.
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