Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Am J Physiol Cell Physiol. 2020 Mar 1;318(3):C581-C597. doi: 10.1152/ajpcell.00460.2019. Epub 2020 Jan 8.
The histone deacetylase inhibitor trichostatin A (TSA) reduces cell viability in cisplatin-sensitive (A2780WT) and cisplatin-resistant (A2780RES) human ovarian cancer cells due to progression of apoptosis (increased caspase-9 activity), autophagy (increased LC3-II expression), and cell cycle arrest (increased p21 expression). The TSA-mediated effect on p21 and caspase-9 is mainly p53 independent. Cisplatin increases DNA-damage (histone H2AX phosphorylation) in A2780WT cells, whereas cisplatin, due to reduced uptake [inductively coupled-plasma-mass spectrometry (Pt) analysis], has no DNA-damaging effect in A2780RES cells. TSA has no effect on cisplatin accumulation or cisplatin-induced DNA-damage in A2780WT/A2780RES cells. Tracer technique indicates that TSA inhibits the volume-sensitive organic anion channel (VSOAC) in A2780WT/A2780RES cells and that the activity is restored by exogenous HO. As TSA reduces NOX4 mRNA accumulation and concomitantly increases catalase mRNA/protein accumulation, we suggest that TSA increases the antioxidative defense in A2780 cells. Inhibition of the kinase mTOR (rapamycin, palomid, siRNA), which is normally associated with cell growth, reduces VSOAC activity synergistically to TSA. However, as TSA increases mTOR activity (phosphorylation of 4EBP1, S6 kinase, S6, ULK1, SGK1), the effect of TSA on VSOAC activity does not reflect the shift in mTOR signaling. Upregulation of the protein expression and activity of the taurine transporter (TauT) is a phenotypic characteristic of A2780RES cells. However, TSA reduces TauT protein expression in A2780RES cells and activity to values seen in A2780WT cells. It is suggested that therapeutic benefits of TSA in A2780 do not imply facilitation of cisplatin uptake but more likely a synergistic activation of apoptosis/autophagy and reduced TauT activity.
组蛋白去乙酰化酶抑制剂曲古抑菌素 A(TSA)可诱导顺铂敏感型(A2780WT)和耐药型(A2780RES)人卵巢癌细胞发生凋亡(caspase-9 活性增加)、自噬(LC3-II 表达增加)和细胞周期停滞(p21 表达增加),从而降低细胞活力。TSA 对 p21 和 caspase-9 的作用主要与 p53 无关。顺铂可增加 A2780WT 细胞中的 DNA 损伤(组蛋白 H2AX 磷酸化),而由于摄取减少(电感耦合等离子体质谱分析(Pt)),顺铂对 A2780RES 细胞无 DNA 损伤作用。TSA 对 A2780WT/A2780RES 细胞中顺铂的积累或顺铂诱导的 DNA 损伤没有影响。示踪技术表明 TSA 抑制 A2780WT/A2780RES 细胞中的容积敏感性有机阴离子通道(VSOAC),而外源性 HO 可恢复其活性。由于 TSA 降低了 NOX4mRNA 的积累,同时增加了过氧化氢酶 mRNA/蛋白的积累,我们认为 TSA 增加了 A2780 细胞的抗氧化防御能力。抑制通常与细胞生长相关的激酶 mTOR(雷帕霉素、palomid、siRNA)可与 TSA 协同降低 VSOAC 活性。然而,由于 TSA 增加了 mTOR 的活性(4EBP1、S6 激酶、S6、ULK1、SGK1 的磷酸化),因此 TSA 对 VSOAC 活性的影响并不反映 mTOR 信号的转变。牛磺酸转运体(TauT)的蛋白表达和活性上调是 A2780RES 细胞的表型特征。然而,TSA 降低了 A2780RES 细胞中的 TauT 蛋白表达和活性,使其恢复到 A2780WT 细胞的水平。这表明 TSA 在 A2780 中的治疗益处并不意味着促进顺铂摄取,而更可能是协同激活凋亡/自噬和降低 TauT 活性。
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