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1.
Chinese Journal of Dermatology ; (12): 772-775, 2014.
Artigo em Chinês | WPRIM | ID: wpr-468729

RESUMO

Objective To investigate the effects of aquaporin 3 (AQP3) and phospholipase D2 (PLD2) on the proliferation and apoptosis of a human cutaneous squamous cell carcinoma cell line A431.Methods Three small interfering RNAs (siRNAs) were constructed targeting the AQP3 and PLD2 genes separately,and transfected into A431 cells using liposomes.Then,fluorescence quantitative PCR was performed to find the most efficient siRNAs.Western blot was conducted to detect the protein expression levels of AQP3 and PLD2 in A431 cells after transfection with the selected AQP3-siRNA and PLD2-siRNA.Some A431 cells were divided into five groups:normal control group without any treatment,transfection reagent group treated with the oligofectamine reagent only,negative control group transfected with the negative control siRNA,AQP3-siRNA group transfected with the selected AQP3-siRNA,PLD2-siRNA group transfected with the selected PLD2-siRNA.After additional culture,cell counting kit-8 assay was performed to evaluate the proliferation of A431 cells,flow cytometry to detect the apoptosis of A431 cells after annexin V-fluorescein isocyanate/propidium iodide double-staining.Statistical analysis was carried out by the paired t test.Results The transfection with AQP3-siRNA and PLD2-siRNA induced a significant decrease in the mRNA and protein expressions of AQP3 and PLD2 respectively in A431 cells when compared with the untransfected cells.Compared with the negative control group,the proliferation of A431 cells was significantly decelerated at 24,48 and 72 hours after transfection in the AQP3-siRNA group (t =24.10,11.00,9.54,respectively,all P < 0.01) and PLD2-siRNA group (t =30.47,7.02,8.73,respectively,all P < 0.01).A significant increase was observed in the apoptosis of A431 cells at 48 and 72 hours after transfection with AQP3-siRNA (t =11.36,20.91,respectively,both P < 0.01),and at 72 hours after transfection with PLD2-siRNA (t =4.86,P < 0.05) compared with the negative control group.Conclusion The down-regulation of AQP3 and PLD2 expressions by siRNA can inhibit the proliferation,but induce the apoptosis,of A431 cells.

2.
Chinese Journal of Dermatology ; (12): 239-243, 2013.
Artigo em Chinês | WPRIM | ID: wpr-436372

RESUMO

Objective To assess differential expression profiles of microRNAs(miRNAs) in HaCaT human keratinocytes before and after p53 gene silencing,and to make a functional analysis of target genes.Methods Lentivirus-mediated RNA interference (RNAi) was used to silence p53 gene in HaCaT cells.Total RNA was extracted using Trizol reagent.Then,miRNAs were isolated by polyethylene glycol (PEG) and subjected to fluorescent labeling using T4RNA ligase followed by hybridization to a mammalian miRNA chip.Microarrays were scanned by a GenePix 4000B microarray scanner and fluorescence ratios were determined with the GenePix Pro 6.0 software.The TargetScan software was used to predict target genes of differentially expressed miRNAs (>2-fold difference in expression level),and the top 20 target genes with the highest enrichment score were selected for each miRNA and subjected to functional analysis and pathway analysis through the KEGG signaling database.Results Totally,53 differentially expressed miRNAs,including 12 down-regulated and 41 up-regulated miRNAs,were identified in HaCaT cells after p53 silencing as compared to those before p53 silencing.Of these 53 differentially expressed miRNAs,5 (hsa-miR-141-3p,hsa-miR-15a-5p,hsa-miR-27a-3p,hsa-miR-130b-3p,hsa-miR-19a-3p) showed a more than 200-fold increase in expression,and 4 (hiv1-miR-TAR-3p,hsa-miR-630,hsa-miR-1246,hsa-miR-1275) experienced a more than 4-fold decrease in expression in HaCaT cells after p53 silencing.Functional analysis and pathway analysis revealed that some target genes of these differentially expressed miRNAs were involved in the mitogen-activated protein kinase (MAPK) signaling pathway,metabolic pathways,and tumor invasion.Conclusion Nine miRNAs,including hsa-miR-141-3p,may be involved in p53-mediated molecular regulation.

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