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Transcriptional regulation of seven cyadox-related genes mainly activated by PI3K and NF-kappa B signaling pathways in PK-15 cells

机译:PI3K和NF-KAPPA B信用途径在PK-15细胞中主要激活的七种毒毒相关基因的转录调节

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摘要

Cyadox, a new antibacterial agent as the quinoxaline-1, 4-dioxides, has a good antibacterial and growth-promoting effect, and has the advantages of lower toxicity, adequate safety and faster absorption. Seven differential expressed genes (DEGs) induced by cyadox were screened in swine liver tissues, 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 cyadox-related novel gene (CRNG). To elucidate the signal mechanism that cyadox altered these genes expression, the time-effect relationship and signaling pathways related to 7 DEGs induced by cyadox were determined in Porcine Kidney-15 (PK-15) cells by RT-qPCR and the application of various signal pathway inhibitors. The phosphorylation levels of signal factors in PK-15 cells were detected by Western blot. The analyses demonstrated that, the mRNA expressions of 7 DEGs were significantly enhanced by cyadox mainly through the phosphoinositide 3-kinase (PI3K) and nuclear factor kappa-light-chain-enhancer of activated B cells (NF-kappa B) signaling pathways in PK-15 cells. Furthermore, EGF might be the early response gene of cyadox to activate downstream signaling pathways and regulates the expression of other related genes or directly exerting biological effects. In brief, cyadox mainly regulates the expression of these 7 genes by PI3K and NF-kappa B signaling pathways to exert it's antibacterial and growth-promoting activity in PK-15 cells.
机译:CYADOX,一种新的抗菌剂作为喹喔啉-1,4-二氧化物具有良好的抗菌和生长促进作用,具有较低毒性,充分的安全性和更快的吸收的优点。在猪肝组织中筛选七种差异表达基因(DEGS)在猪肝组织中筛选,包括胰岛素样生长因子-1(IGF-1),表皮生长因子(EGF),聚ADP-核糖聚合酶(PARP),对抗凋亡死亡1(DAD1),补体组分3(C3),转铁糖酶(TK)和Cyadox相关的新型基因(CRNG)。为了阐明Cyadox改变这些基因表达的信号机制,通过RT-QPCR在猪肾-15(PK-15)细胞中测定与慢毒素诱导的7℃的时间效应关系和信号通路,并应用各种信号途径抑制剂。通过Western印迹检测PK-15细胞信号因子的磷酸化水平。分析证明,MRNA表达的MRNA表达式通过磷酸钠主要通过磷酸阳性3-激酶(PI3K)和核因子Kappa-Light-Chion-Enhancer的PK中的活化B细胞(NF-Kappa B)信号通路的核因子Kappa轻链增强剂-15细胞。此外,EGF可能是Cyadox的早期反应基因,以激活下游信号传导途径,并调节其他相关基因的表达或直接施加生物效应。简而言之,Cyadox主要调节PI3K和NF-Kappa B信号传导途径的这些7基因的表达,以在PK-15细胞中发挥它的抗菌和生长促进活性。

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