| Literature DB >> 30594196 |
Zhe Qian1, Qiankun Zhang2, Ying Hu1, Tongmei Zhang1, Jie Li1, Zan Liu1, Hua Zheng1, Yuan Gao1, Wenyun Jia1, Aimin Hu1, Baolan Li3, Jiqing Hao4.
Abstract
BACKGROUND: This study investigated the function of SMAD3 (SMAD family member 3) in regulating PAX6 (paired box 6) in non-small cell lung cancer.Entities:
Keywords: Non-small cell lung cancer; PAX6; SMAD3
Mesh:
Substances:
Year: 2018 PMID: 30594196 PMCID: PMC6311080 DOI: 10.1186/s12931-018-0948-z
Source DB: PubMed Journal: Respir Res ISSN: 1465-9921
Fig. 1SMAD3 and PAX6 are highly expressed in NSCLC tissues and cells. a SMAD3 expression levels in NSCLC tissues compared with the normal groups (n = 20). b SMAD3 mRNA levels in the BEAS-2B, H125, HCC827 and A549 cell lines normalized to GAPDH (left panel) and GUSB (right panel) (n = 3). (c and d) SMAD3 protein levels in the BEAS-2B, H125, HCC827 and A549 cell lines (n = 3). e PAX6 expression levels in the NSCLC tissues compared with the normal groups (n = 20). f PAX6 mRNA levels in the BEAS-2B, H125, HCC827 and A549 cell lines normalized to GAPDH (left panel) and GUSB (right panel)(n = 3). g and h PAX6 protein levels in the BEAS-2B, H125, HCC827 and A549 cell lines (n = 3). Data represent the mean ± SD. **P < 0.01 compared with the control group
Fig. 2SMAD3 knockdown decreased SMAD3 and PAX6 expression levels. a SMAD3 and PAX6 mRNA expression levels in A549 cells transfected with siRNA and normalized to GAPDH (left panel) and GUSB (right panel). b SMAD3 and PAX6 protein expression levels in A549 cells transfected with siRNA (n = 3). c SMAD3 and PAX6 mRNA expression levels in HCC827 cells transfected with siRNA normalized to GAPDH (left panel) and GUSB (right panel). d SMAD3 and PAX6 protein expression levels in HCC827 cells transfected with siRNA. Data represent the mean ± SD. *P < 0.05 and **P < 0.01 compared with the control group
Fig. 3SMAD3 knockdown inhibited PAX6 transcription in A549 and HCC827 cells. a Deletion mutation analyses identified the FoxC1-responsive regions in the CCL2 promoter in A549 cells. Serially truncated PAX6 promoter constructs were cotransfected with pCMV-SMAD3 and relative luciferase activities were determined. The schematic constructs are shown (left) and the bar graphs represent the relative levels of luciferase activity in each of the samples (right). #P < 0.05 compared with the pCMV group. *P < 0.05 compared with the group with the − 1978 ~ + 50 regions cloned into the luciferase reports plasmids. b ChIP assay demonstrated the direct binding of SMAD3 to the PAX6 promoter in A549 cells. Real-time PCR was performed to detect the amounts of immunoprecipitated products. The cells were crosslinked and the chromatin was immunoprecipitated using anti-SMAD3 or control antibodies. #P < 0.05 compared with the pCMV group. *P < 0.05 compared with the distant region. c Deletion mutation analyses identified FoxC1-responsive regions in the CCL2 promoter in HCC827 cells. #P < 0.05 compared with the pCMV group. *P < 0.05 compared with the group with the − 1978 ~ + 50 regions cloned into the luciferase reports plasmids. d ChIP assay demonstrated the direct binding of SMAD3 to the PAX6 promoter in HCC827 cells. #P < 0.05 compared with the pCMV group. *P < 0.05 compared with the distant region
Fig. 4SMAD3 downregulation decreased the cell migration and invasion of A549 and HCC827 cells. a SMAD3 downregulation inhibited the migration of A549 cells. b SMAD3 downregulation inhibited the invasion capacity of A549 cells. c SMAD3 downregulation inhibited the migration of HCC827 cells. d SMAD3 downregulation inhibited the invasion capacity of HCC827 cells. All experiments were performed in triplicate. Data represent the mean ± SD. NC group: cells were transfected with scrambled siRNA. **P < 0.01 compared with the NC group. #P < 0.05 compared with the si-SMAD3 #1 group
Fig. 5SMAD3 downregulation decreased the colony forming capacity and cell viability of A549 and HCC827 cells. a The colony forming capacity of A549 cells was detected by colony forming assay. b The cell viability of A549 cells was determined by CCK-8 assay. c The colony forming capacity of HCC827 cells was detected by colony forming assay. d The cell viability of HCC827 cells was determined by CCK-8 assay. All experiments were performed in triplicate. Data represent the mean ± SD. *P < 0.05 and **P < 0.01 compared with the NC group. #P < 0.05 compared with the si-SMAD3 group
Fig. 6PAX6 downregulation decreased the cell migration and invasion of A549 and HCC827 cells. a PAX6 downregulation inhibited the migration of A549 cells. b PAX6 downregulation inhibited the invasion capacity of A549 cells. c PAX6 downregulation inhibited the migration of HCC827 cells. d PAX6 downregulation inhibited the invasion capacity of HCC827 cells. All experiments were performed in triplicate. Data represent the mean ± SD. **P < 0.01 compared with the NC group
Fig. 7PAX6 downregulation decreased the colony forming capacity and cell viability of A549 and HCC827 cells. a The colony forming capacity of A549 cells after transfection with si-SMAD3 or si-PAX6 was detected by colony forming assay. b The cell viability of A549 cells after transfection with si-SMAD3 or si-PAX6 was determined by CCK-8 assay. c The colony forming capacity in HCC827 cells after transfection with si-SMAD3 or si-PAX6 was detected by colony forming assay. d The cell viability of HCC827 cells after transfection with si-SMAD3 or si-PAX6 was determined by CCK-8 assay. All experiments were performed in triplicate. Data represent the mean ± SD. *P < 0.05 and **P < 0.01 compared with the NC group