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Fenofibrate induces human hepatoma Hep3B cells apoptosis and necroptosis through inhibition of thioesterase domain of fatty acid synthase

机译:非诺贝特通过抑制脂肪酸合酶的硫酯酶结构域诱导人肝癌Hep3B细胞凋亡和坏死性坏死

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摘要

This study demonstrated that fenofibrate, a lipid-lowering drug, induced a significant time-dependent cytotoxicity of hepatoma Hep3B cells. Hep3B cells are significantly more sensitive to cell killing by fenofibrate than hepatoma HepG2, lung cancer CH27 and oral cancer HSC-3 cells. From the result of docking simulation, fenofibrate can bind excellently to the thioesterase domain of fatty acid synthase (FASN) binding site as orlistat, a FASN inhibitor, acts. The fenofibrate-induced cell cytotoxicity was protected by addition of palmitate, indicating that the cytotoxic effect of fenofibrate is due to starvation of Hep3B cells by inhibiting the formation of end product in the FASN reaction. Inhibition of lipid metabolism-related proteins expression, such as proteins containing thioesterase domain and fatty acid transport proteins, was involved in the fenofibrate-induced Hep3B cell death. Fenofibrate caused S and G2/M cell cycle arrest by inducing cyclin A/Cdk2 and reducing cyclin D1 and E protein levels in Hep3B cells. The anti-tumor roles of fenofibrate on Hep3B cells by inducing apoptosis and necroptosis were dependent on the expression of Bcl-2/caspase family members and RIP1/RIP3 proteins, respectively. These results suggest that fenofibrate has an anti-cancer effect in Hep3B cells and inhibition of lipid metabolism may be involved in fenofibrate-induced Hep3B cells apoptosis and necroptosis.
机译:这项研究证明非诺贝特(一种降脂药物)可诱导肝癌Hep3B细胞具有明显的时间依赖性细胞毒性。与肝癌HepG2,肺癌CH27和口腔癌HSC-3细胞相比,Hep3B细胞对非诺贝特杀死细胞的敏感性更高。从对接模拟的结果来看,非诺贝特可以很好地与脂肪酸合酶(FASN)结合位点的硫酯酶结构域结合,这是因为FASN抑制剂奥利司他起作用。通过添加棕榈酸酯来保护非诺贝特诱导的细胞毒性,这表明非诺贝特的细胞毒性作用是由于通过抑制FASN反应中终产物的形成而使Hep3B细胞饥饿。非诺贝特诱导的Hep3B细胞死亡涉及脂质代谢相关蛋白表达的抑制,例如含有硫酯酶结构域和脂肪酸转运蛋白的蛋白。非诺贝特通过诱导Hep3B细胞中的细胞周期蛋白A / Cdk2和降低细胞周期蛋白D1和E蛋白水平,导致S和G2 / M细胞周期停滞。非诺贝特通过诱导细胞凋亡和坏死性凋亡对Hep3B细胞的抗肿瘤作用分别取决于Bcl-2 / caspase家族成员和RIP1 / RIP3蛋白的表达。这些结果表明非诺贝特在Hep3B细胞中具有抗癌作用,脂质代谢的抑制作用可能与非诺贝特诱导的Hep3B细胞凋亡和坏死性坏死有关。

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