phospho stat3 (Cell Signaling Technology Inc)
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Phospho Stat3, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 96/100, based on 459 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 96 stars, based on 459 article reviews
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1) Product Images from "MiR-944/CISH mediated inflammation via STAT3 is involved in oral cancer malignance by cigarette smoking"
Article Title: MiR-944/CISH mediated inflammation via STAT3 is involved in oral cancer malignance by cigarette smoking
Journal: Neoplasia (New York, N.Y.)
doi: 10.1016/j.neo.2020.08.005
Figure Legend Snippet: Phenotypic effects of dysregulated CISH in OSCC cell lines. (A) Western blot analysis of the STAT3, 5 and their phosphorylation form after transfection of control vector (Vec) or CISH expression vector (CISH) for 48 h in SAS and SCC-4 cells. GAPDH was used as protein loading control. Numerical values for protein band intensities are shown below the gels. The values were quantitated by densitometry and normalized to GAPDH. (B) The effect of CISH on the transcriptional activity of the construct containing the STAT3 binding sequence. The relative luciferase activities are the ratios of Renilla luciferase normalized to the vector alone control. (C) Migration assay following CISH overexpression for 24 h using Matrigel non-coated Boyden chamber assay in SAS and SCC-4 cells. (D) Invasion assay following CISH overexpression for 24 h using Matrigel coated Boyden chamber assay in SAS and SCC-4 cells. (E) CCL3, CCL5 and IL-1β levels in cultured medium of CISH overexpression SAS and SCC-4 cells measured by ELISA (compared with Vec control). (F) Western blot analysis of the CISH, COX-2 and iNOS after transfection of CISH for 48 h in SAS and SCC-4 cells. GAPDH was used as protein loading control. All data are represented as mean ± SD; **, p < 0.01; ***, p < 0.001.
Techniques Used: Western Blot, Phospho-proteomics, Transfection, Control, Plasmid Preparation, Expressing, Activity Assay, Construct, Binding Assay, Sequencing, Luciferase, Migration, Over Expression, Boyden Chamber Assay, Invasion Assay, Cell Culture, Enzyme-linked Immunosorbent Assay
Figure Legend Snippet: CISH is a direct target of miR-944. (A) Flow chat of predicted miRNA which targets CISH 3′-UTR using two independent algorithms (microRNA.org and TargetScan) combined with our patients’ miRNA array data (GSE45238). (B) Western blot analysis of CISH protein after transfection of miR-944 mimics (PM) with 30 nM for 48 h in OEC-M1 and SCC-25 cells. (C) Schematic representation of the putative miR-944 binding sequence in the 3′-UTR of CISH with wild-type form (CISH 3′UTR WT) and mutant form (CISH 3′UTR Mut). The mutated nucleotides are labeled with underline. (D) Luciferase activity assays were performed after OEC-M1 and SCC-25 cells transfected with luciferase vectors containing the wide-type or mutant CISH 3′-UTR, in response to miR-944 over-expression. The relative luciferase activity of each sample is measured at 48 h after transfection and normalized to Renilla luciferase activity. (E) Correlation analysis of miR-944 and CISH in human OSCC patients ( n = 33) by qRT-PCR analysis. Western blot analysis of the CISH, STAT3 and phosphor-STAT3 after transfection of miR-944 mimics (PM) (F) or miR-944 inhibitors (AM) (G) with indicated concentration for 48 h in OEC-M1 and SCC-25 cells. All data are presented as mean ± SD; ***, p < 0.001 versus scramble control (NC). GAPDH was used as protein loading control. Numerical values for protein band intensities are shown below the gels. The values were quantitated by densitometry and normalized to GAPDH.
Techniques Used: Western Blot, Transfection, Binding Assay, Sequencing, Mutagenesis, Labeling, Luciferase, Activity Assay, Over Expression, Quantitative RT-PCR, Concentration Assay, Control
Figure Legend Snippet: miR-944 regulates OSCC cell functions through targeting CISH. OSCC cells were transfected with miR-944 mimics (PM) or scramble control (NC) for 24 h and then transfected with CISH expression vector without 3′-UTR (pCDNA3.1-CISH) or control vector (pCDNA3.1) for another 24 h. Under this condition, the level of CISH, STAT3 and phosphor-STAT3 were determined in OEC-M1 and SCC-25 cells by western blotting (A). The RNA level of COX-2 and iNOS (B), protein level of CCL3, CCL5 and IL-1β levels in cultured medium (C), migration ability (D), and invasion ability (E) were measured by qRT-PCR, ELISA and transwell assays in OEC-M1 cells. All data are presented as mean ± SD; **, p < 0.01; ***, p < 0.001 versus scramble control (NC). GAPDH was used as protein loading control. Numerical values for protein band intensities are shown below the gels. The values were quantitated by densitometry and normalized to GAPDH.
Techniques Used: Transfection, Control, Expressing, Plasmid Preparation, Western Blot, Cell Culture, Migration, Quantitative RT-PCR, Enzyme-linked Immunosorbent Assay
Figure Legend Snippet: NNK exposure induces miR-944 expression. (A) OEC-M1 and SCC-25 cells were treated with NNK (10–40 µM) for 72 h, and the miR-944 expression level was measured by qRT-PCR analysis. (B) OEC-M1 and SCC-25 cells were treated with 20 µM of NNK for indicated time (24–72 h), and the miR-944 expression level was measured by qRT-PCR analysis. (C) Luciferase activity assays were performed after OEC-M1 and SCC-25 cells transfected with luciferase vectors containing the wide-type or mutant CISH 3′-UTR, in response to DMSO control or 20 µM of NNK treatment. The relative luciferase activity of each sample is measured at 72 h after transfection and normalized to Renilla luciferase activity. OEC-M1 and SCC-25 cells were transfected with miR-944 inhibitors (AM) for 12 h, and followed by 20 µM of NNK treatment for another 72 h. Under this condition, the expression level of miR-944 was determined by qRT-PCR analysis (D), and the protein level of CISH, STAT3, phosphor-STAT3 and GAPDH were determined by western blot analysis (E). All data are presented as mean ± SD; *, p < 0.05; **, p < 0.01; ***, p < 0.001. Numerical values for protein band intensities are shown below the gels. The values were quantitated by densitometry and normalized to GAPDH.
Techniques Used: Expressing, Quantitative RT-PCR, Luciferase, Activity Assay, Transfection, Mutagenesis, Control, Western Blot
Figure Legend Snippet: The effects of NNK on the STAT3-mediated pro-inflammation genes. OEC-M1 and SCC-25 cells were transfected with miR-944 inhibitors (AM) for 12 h, and followed by 20 µM of NNK treatment for another 72 h. The RNA level of COX-2 and iNOS in cells (A), protein level of CCL3, CCL5 and IL-1β in cultured medium (B) were measured by qRT-PCR or ELISA. (C) Migration and invasion ability were measured by transwell assays in OEC-M1 and SCC-25 cells. (D) OEC-M1 and SCC-25 cells were treated with 20 µM of NNK for 72 h, and the TP63 expression level was measured by qRT-PCR analysis. (E) Correlation analysis of miR-944 and TP63 in human OSCC patients (n = 33) by qRT-PCR analysis. (F) Proposed model for comprehensive NNK-induced upregulation of miR-944 in stimulating STAT3 activation and pro-inflammatory genes expression through suppression of CISH. All data are represented as mean ± SD; **, p < 0.01; ***, p < 0.001.
Techniques Used: Transfection, Cell Culture, Quantitative RT-PCR, Enzyme-linked Immunosorbent Assay, Migration, Expressing, Activation Assay


