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Fatty acid synthase inhibition by amentoflavone suppresses HER2eu (erbB2) oncogene in SKBR3 human breast cancer cells

机译:苯甲酸黄酮对脂肪酸合酶的抑制作用可抑制SKBR3人乳腺癌细胞中的HER2 / neu(erbB2)癌基因

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Fatty acid synthase (FASN) is a potential therapeutic target for treatment of cancer and obesity, and is highly elevated in 30% of HER2-overexpressing breast cancers. Considerable interest has developed in searching for novel FASN inhibitors as therapeutic agents in treatment of HER2-overexpressing breast cancers. Amentoflavone was found to be effective in suppressing FASN expression in HER2-positive SKBR3 cells. Pharmacological inhibition of FASN by amentoflavone specifically down-regulated HER2 protein and mRNA, and caused an up-regulation of PEA3, a transcriptional repressor of HER2. In addition, pharmacological blockade of FASN by amentoflavone preferentially decreased cell viability and induced cell death in SKBR3 cells. Palmitate reduced the cytotoxic effect of amentoflavone, as the percentage of viable cells was increased after the addition of exogenous palmitate. Amentoflavone-induced FASN inhibition inhibited the translocation of SREBP-1 in SKBR3 cells. Amentoflavone inhibited phosphorylation of AKT, mTOR, and JNK. The use of pharmacological inhibitors revealed that the modulation of AKT, mTOR, and JNK phosphorylation required synergistic amentoflavone-induced FASN inhibition and HER2 activation in SKBR3 cells. These results suggest that amentoflavone modulated FASN expression by regulation of HER2-pathways, and induced cell death to enhance chemopreventive or chemotherapeutic activity in HER2-positive breast cancers.
机译:脂肪酸合酶(FASN)是治疗癌症和肥胖症的潜在治疗靶标,在30%的HER2过表达乳腺癌中高度升高。在寻找新的FASN抑制剂作为治疗HER2过表达的乳腺癌的治疗剂方面已经引起了相当大的兴趣。发现黄酮对抑制HER2阳性SKBR3细胞中FASN的表达有效。甲黄酮对FASN的药理抑制作用特别下调HER2蛋白和mRNA,并引起HER2转录阻遏物PEA3上调。此外,金黄色酮对FASN的药理阻断作用会优先降低SKBR3细胞的细胞活力并诱导细胞死亡。棕榈酸酯降低了黄酮的细胞毒性作用,因为添加外源棕榈酸酯后活细胞的百分比增加了。 Amentoflavone诱导的FASN抑制抑制SKBR3细胞中SREBP-1的移位。甲黄酮抑制AKT,mTOR和JNK的磷酸化。药理学抑制剂的使用表明,AKT,mTOR和JNK磷酸化的调节需要协同的amentoflavone诱导的FASN抑制和SKBR3细胞中的HER2激活。这些结果表明,黄酮酮通过调节HER2途径来调节FASN表达,并诱导细胞死亡以增强HER2阳性乳腺癌的化学预防或化学治疗活性。

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