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1.
Braz. j. med. biol. res ; 54(5): e9700, 2021. tab, graf
Article in English | LILACS | ID: biblio-1180737

ABSTRACT

Lung adenocarcinomas are usually sensitive to radiation therapy, but some develop resistance. Radiation resistance can lead to poor patient prognosis. Studies have shown that lung adenocarcinoma cells (H1299 cells) can develop radioresistance through epithelial-mesenchymal transition (EMT), and this process is regulated by miRNAs. However, it is unclear which miRNAs are involved in the process of EMT. In our present study, we found that miR-183 expression was increased in a radioresistant lung adenocarcinoma cell line (H1299R cells). We then explored the regulatory mechanism of miR-183 and found that it may be involved in the regulation of zinc finger E-box-binding homeobox 1 (ZEB1) expression and mediate EMT in lung adenocarcinoma cells. qPCR results showed that miR-183, ZEB1, and vimentin were highly expressed in H1299R cells, whereas no difference was observed in E-cadherin expression. Western blot results showed that ZEB1 and vimentin were highly expressed in H1299R cells, while E-cadherin expression was decreased. When miR-183 expression was inhibited in H1299R cells, radiation resistance, proliferation, and cell migration were decreased. The expression of ZEB1 and vimentin in H1299R cells was decreased, while the expression of E-cadherin was increased. Moreover, miR-183 overexpression in H1299 cells enhanced radiation resistance, proliferative capacity, and cell migration ability. The expression of ZEB1 and vimentin in H1299 cells was increased, while that of E-cadherin was decreased. In conclusion, miR-183 may promote EMT and radioresistance in H1299 cells, and targeting the miR-183-ZEB1 signaling pathway may be a promising approach for lung cancer treatment.


Subject(s)
Humans , MicroRNAs/genetics , Adenocarcinoma of Lung/genetics , Adenocarcinoma of Lung/radiotherapy , Lung Neoplasms/genetics , Lung Neoplasms/radiotherapy , Gene Expression Regulation, Neoplastic , Cell Movement , Cell Line, Tumor , Epithelial-Mesenchymal Transition
3.
Biol. Res ; 52: 4, 2019. tab, graf
Article in English | LILACS | ID: biblio-1011407

ABSTRACT

BACKGROUND: Hematoporphyrin derivative (HPD) has a sensibilization effect in lung adenocarcinoma. This study was conducted to identify the target genes of HPD in lung adenocarcinoma. METHODS: RNA sequencing was performed using the lung adenocarcinoma cell line A549 after no treatment or treatment with X-ray or X-ray + HPD. The differentially expressed genes (DEGs) were screened using Mfuzz package by noise-robust soft clustering analysis. Enrichment analysis was carried out using "BioCloud" online tool. Protein-protein interaction (PPI) network and module analyses were performed using Cytoscape software. Using WebGestalt tool and integrated transcription factor platform (ITFP), microRNA target and transcription factor (TF) target pairs were separately predicted. An integrated regulatory network was visualized with Cytoscape software. RESULTS: A total of 815 DEGs in the gene set G1 (continuously dysregulated genes along with changes in processing conditions [untreated-treated with X-ray-X-ray + treated with HPD]) and 464 DEGs in the gene set G2 (significantly dysregulated between X-ray + HPD-treated group and untreated/X-ray-treated group) were screened. The significant module identified from the PPI network for gene set G1 showed that ribosomal protein L3 (RPL3) gene could interact with heat shock protein 90 kDa alpha, class A member 1 (HSP90AA1). TFs AAA domain containing 2 (ATAD2) and protein inhibitor of activated STAT 1 (PIAS1) were separately predicted for the genes in gene set G1 and G2, respectively. In the integrated network for gene set G2, ubiquitin-specific peptidase 25 (USP25) was targeted by miR-200b, miR-200c, and miR-429. CONCLUSION: RPL3, HSP90AA1, ATAD2, and PIAS1 as well as USP25, which is targeted by miR-200b, miR-200c, and miR-429, may be the potential targets of HPD in lung adenocarcinoma.


Subject(s)
Humans , Hematoporphyrin Derivative/pharmacology , Gene Regulatory Networks/genetics , Adenocarcinoma of Lung/genetics , Lung Neoplasms/genetics , Ribosomal Proteins/drug effects , Ribosomal Proteins/genetics , Transcription Factors , Cluster Analysis , Gene Expression Regulation, Neoplastic , Sequence Analysis, RNA , HSP90 Heat-Shock Proteins/drug effects , HSP90 Heat-Shock Proteins/genetics , Small Ubiquitin-Related Modifier Proteins/drug effects , Small Ubiquitin-Related Modifier Proteins/genetics , MicroRNAs/metabolism , Cell Line, Tumor , DNA-Binding Proteins/drug effects , DNA-Binding Proteins/genetics , Protein Inhibitors of Activated STAT/drug effects , Protein Inhibitors of Activated STAT/genetics , Flow Cytometry , ATPases Associated with Diverse Cellular Activities/drug effects , ATPases Associated with Diverse Cellular Activities/genetics , Adenocarcinoma of Lung/drug therapy , Adenocarcinoma of Lung/radiotherapy , Lung Neoplasms/drug therapy , Lung Neoplasms/radiotherapy
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