首页> 外文期刊>Journal of Agricultural and Food Chemistry >Induction of Apoptosis by 1-(2-Hydroxy-5-methylphenylj-3-phenyl-1,3-propanedione through Reactive Oxygen Species Production,GADD153 Expression,and Caspases Activation in Human Epidermoid Carcinoma Cells
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Induction of Apoptosis by 1-(2-Hydroxy-5-methylphenylj-3-phenyl-1,3-propanedione through Reactive Oxygen Species Production,GADD153 Expression,and Caspases Activation in Human Epidermoid Carcinoma Cells

机译:1-(2-羟基-5-甲基苯基j-3-苯基-1,3-丙二酮通过活性氧的产生,GADD153表达和胱天蛋白酶在人表皮癌细胞中的活化诱导凋亡

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This study examined the growth inhibitory effects of the structurally related beta-diketones compounds in human cancer cells.Here,we report that 1-(2-hydroxy-5-methylphenyl)-3-phenyl-1,3-propanedione(HMDB)induces growth inhibition of human cancer cells and induction of apoptosis in A431 cells through modulation of mitochondrial functions regulated by reactive oxygen species(ROS).ROS generation occurs in the early stages of HMDB-induced apoptosis,preceding cytochrome c release,caspase activation,and DNA fragmentation.The changes occurred after single breaks in DNA were detected,suggesting that HMDB induced irreparable DNA damage,which in turn triggered the process of apoptosis.Up-regulation of Bad and p21;down-regulation of Bcl-2,Bcl-X_L,Bid,p53,and fatty acid synthase;and cleavage of Bax were found in HMDB-treated A431 cells.Glutathione and N-acetylcysteine(NAG)suppress HMDB-induced apoptosis.HMDB markedly enhanced growth arrest DNA damage inducible gene 153(GADD153)mRNA and protein in a time-and concentration-dependent manner.NAC prevented up-regulation of GADD153 mRNA expression caused by HMDB.These findings suggest that HMDB creates an oxidative cellular environment that induces DNA damage and GADD153 gene activation,which in turn helps trigger apoptosis in A431 cells.
机译:这项研究检查了结构相关的β-二酮化合物在人癌细胞中的生长抑制作用。在这里,我们报道1-(2-羟基-5-甲基苯基)-3-苯基-1,3-丙二酮(HMDB)诱导通过调节活性氧(ROS)调节线粒体功能来抑制人类癌细胞的生长并诱导A431细胞凋亡.ROS的产生发生在HMDB诱导的细胞凋亡的早期阶段,先于细胞色素c释放,胱天蛋白酶活化和DNA检测到DNA的单断裂后发生变化,这表明HMDB导致了不可修复的DNA损伤,进而触发了凋亡过程.Bad和p21的上调; Bcl-2,Bcl-X_L的下调,在HMDB处理的A431细胞中发现了Bid,p53和脂肪酸合酶的表达,以及Bax的裂解;谷胱甘肽和N-乙酰半胱氨酸(NAG)抑制了HMDB诱导的细胞凋亡.HMDB显着增强了生长停滞DNA损伤诱导基因153(GADD153)mRNA。和蛋白质NAC阻止了HMDB引起的GADD153 mRNA表达的上调。这些发现表明HMDB创造了一种氧化细胞环境,该细胞环境诱导DNA损伤和GADD153基因激活,进而有助于触发A431细胞凋亡。 。

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