Article Summary
张晓娜 张学彦 于旸 乔虹 胥景峰.NF-kB 通路中TAK1 靶点对胃癌细胞系AGS增殖的抑制作用[J].现代生物医学进展英文版,2015,15(28):5432-5434.
NF-kB 通路中TAK1 靶点对胃癌细胞系AGS增殖的抑制作用
Inhibitory Effect on the Proliferation of Gastric Carcinoma Cell Line AGS byTargeting TAK1 of NF-kB Signaling Pathway
  
DOI:
中文关键词: 转化生长因子激酶1 (TAK1)  NF-kB  胃癌
英文关键词: Transforming growth factor-activated kinase 1(TAK1)  NF-kB  Gastric cancer
基金项目:
Author NameAffiliation
张晓娜 张学彦 于旸 乔虹 胥景峰 哈尔滨医科大学第二附属医院内分泌科 哈尔滨医科大学第二附属医院消化内科哈尔滨医科大学遗传学教研室 
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中文摘要:
      目的:探讨NF-kB信号传导通路中转化生长因子激活激酶1(TAK1)靶点对胃癌AGS 细胞系增殖的影响。方法:利用siRNA 沉默胃癌AGS细胞系中的TAK1 基因,通过Western Blot 验证细胞中TAK1 基因的沉默情况,双项荧光素酶报告基因系统检测 TAK1 基因沉默对AGS细胞系NF-资B信号传导通路活性的影响,软琼脂克隆形成实验检测沉默TAK1 基因对胃癌AGS 细胞系 成瘤能力的影响,MTT 法检测沉默TAK1 基因对胃癌AGS细胞系增殖能力的影响。结果:与对照组Sis-Con 细胞相比,TAK1 基 因沉默组Sir-TAK1-1/Sir-TAK1-2 细胞中NF-kB信号传导通路活性明显受抑制;TAK1 基因沉默组Sir-TAK1-1/Sir-TAK1-2 细胞 软琼脂克隆形成的集落数目明显减少,差异具有统计学意义(P<0.05),且细胞生长的速度明显减慢。结论:TAK1 是NF-kB信号 传导通路激活的关键因子,沉默TAK1 基因可以抑制AGS胃癌细胞系的成瘤性和增殖力。
英文摘要:
      Objective:To investigate the effect of transforming growth factor-activated kinase 1 (TAK1) of NF-kB signaling pathway on the proliferation of AGS gastric cancer cell.Methods:TAK1 gene of AGS cells was silenced by siRNA and then confirmed by western blot. The effect of silencing TAK1 gene on the activity of NF-kB signaling pathway, cell tumorigenicity and cell proliferation were determined by dual-luciferase reporter gene system, soft agar clone formation assay and MTT assay, respectively.Results:The activity of NF- kB signaling pathway in Sir-TAK1-1/Sir-TAK1-2 cells was significantly inhibited after silencing TAK1 gene when compared with Sis-Con group cells. Moreover, the number of clone formation of Sir-TAK1-1/Sir-TAK1-2 cells was dramatically decreased, and significant differences were found compared with Sis-Con group cells (P<0.05). The growth of Sir-TAK1-1/Sir-TAK1-2 cells was significantly decreased.Conclusion:TAK1 gene is the key factor for activating NF-kB signaling pathway. The tumorigenicity and proliferation of AGS gastric cancer cell lines could be inhibited by silencing TAK1 gene.
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