Cyadox regulates the transcription of different genes by activation of the PI3K signaling pathway in porcine primary hepatocytes.
Ju GuoLuqing CuiQirong LuYinfeng ZhangQianying LiuXu WangYulian WangZhenli LiuZonghui YuanMenghong DaiPublished in: Journal of cellular biochemistry (2018)
Cyadox, a new derivative of quinoxalines, has been ascertained as an antibiotic with significant growth promoting, low poison, quick absorption, swift elimination, brief residual period, and noncumulative effect. Seven differential expressed genes, including Insulin-like Growth Factor-1 ( IGF-1), Epidermal Growth Factor ( EGF), Poly ADP-ribose polymerase ( PARP), the Defender Against Apoptotic Death 1 ( DAD1), Complement Component 3 ( C3), Transketolase ( TK) and a New gene, were induced by cyadox in swine liver tissues by messenger RNA differential display reverse transcription polymerase chain reaction (DDRT-PCR) in our laboratory. However, the signal mechanism that cyadox altered these genes expression is not completely elucidated. The signaling pathways involved in the expressions of seven genes induced by cyadox were determined in porcine primary hepatocytes by RT-qPCR and the application of various signal pathway inhibitors. 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay revealed that cyadox could stimulate proliferation of porcine primary hepatocytes in a time-dependent manner. In porcine primary cultured hepatocytes, phosphoinositide 3-kinase (PI3K) and transforming growth factor-β (TGF-β) signal pathways were the main signal pathways involved in the expressions of seven genes induced by cyadox. Taken together, these results demonstrate for the first time that seven cyadox-related genes expressions in porcine primary hepatocytes treated with cyadox are mediated mainly through the PI3K signaling pathway, potentially leading to enhanced cell growth and cell immunity. EGF might be the early response gene of cyadox, and a primary regulator of the other gene expressions such as IGF-1 and DAD1, playing an important role in cell proliferation promoted by cyadox.
Keyphrases
- signaling pathway
- genome wide
- genome wide identification
- growth factor
- transforming growth factor
- pi k akt
- epithelial mesenchymal transition
- cell proliferation
- transcription factor
- liver injury
- genome wide analysis
- dna methylation
- ms ms
- bioinformatics analysis
- high throughput
- stem cells
- single cell
- drug induced
- oxidative stress
- dna damage
- induced apoptosis
- simultaneous determination
- cell therapy
- high resolution
- bone marrow
- tyrosine kinase