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Proteasome Inhibition Contributed to the Cytotoxicity of Arenobufagin after Its Binding with Na K-ATPase in Human Cervical Carcinoma HeLa Cells

机译:蛋白酶体抑制作用与人类宫颈癌Hela细胞中NaK-ATPase结合后的槟榔蟾蜍精的细胞毒性。

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摘要

Although the possibility of developing cardiac steroids/cardiac glycosides as novel cancer therapeutic agents has been recognized, the mechanism of their anticancer activity is still not clear enough. Toad venom extract containing bufadienolides, which belong to cardiac steroids, has actually long been used as traditional Chinese medicine in clinic for cancer therapy in China. The cytotoxicity of arenobufagin, a bufadienolide isolated from toad venom, on human cervical carcinoma HeLa cells was checked. And, the protein expression profile of control HeLa cells and HeLa cells treated with arenobufagin for 48 h was analyzed using two-dimensional electrophoresis, respectively. Differently expressed proteins in HeLa cells treated with arenobufagin were identified and the pathways related to these proteins were mapped from KEGG database. Computational molecular docking was performed to verify the binding of arenobufagin and Na, K-ATPase. The effects of arenobufagin on Na, K-ATPase activity and proteasome activity of HeLa cells were checked. The protein-protein interaction network between Na, K-ATPase and proteasome was constructed and the expression of possible intermediate proteins ataxin-1 and translationally-controlled tumor protein in HeLa cells treated with arenobufagin was then checked. Arenobufagin induced apoptosis and G2/M cell cycle arrest in HeLa cells. The cytotoxic effect of arenobufagin was associated with 25 differently expressed proteins including proteasome-related proteins, calcium ion binding-related proteins, oxidative stress-related proteins, metabolism-related enzymes and others. The results of computational molecular docking revealed that arenobufagin was bound in the cavity formed by the transmembrane alpha subunits of Na, K-ATPase, which blocked the pathway of extracellular Na+/K+ cation exchange and inhibited the function of ion exchange. Arenobufagin inhibited the activity of Na, K-ATPase and proteasome, decreased the expression of Na, K-ATPase α1 and α3 subunits and increased the expression of WEE1 in HeLa cells. Antibodies against Na, K-ATPase α1 and α3 subunits alone or combinated with arenobufagin also inhibited the activity of proteasome. Furthermore, the expression of the possible intermediate proteins ataxin-1 and translationally-controlled tumor protein was increased in HeLa cells treated with arenobufagin by flow cytometry analysis, respectively. These results indicated that arenobufagin might directly bind with Na, K-ATPase α1 and α3 subunits and the inhibitive effect of arenobufagin on proteasomal activity of HeLa cells might be related to its binding with Na, K-ATPase.
机译:尽管已经认识到开发心脏类固醇/心脏糖苷作为新型癌症治疗剂的可能性,但其抗癌活性的机制仍不清楚。实际上,含有丁二烯内酯的蟾蜍毒液提取物属于心脏类固醇,长期以来一直在中国用作癌症治疗诊所的中药。检查了蟾蜍精(一种从蟾蜍毒液中分离出的丁二烯内酯)对人宫颈癌HeLa细胞的细胞毒性。并且,分别使用二维电泳分析了对照槟榔紫胶处理的HeLa细胞和HeLabufagin处理的HeLa细胞48小时的蛋白表达谱。鉴定了用槟榔蟾蜍精处理的HeLa细胞中差异表达的蛋白质,并从KEGG数据库绘制了与这些蛋白质相关的途径。进行计算分子对接以验证槟榔蟾蜍精和Na,K-ATP酶的结合。检查了槟榔蟾蜍精对HeLa细胞的Na,K-ATPase活性和蛋白酶体活性的影响。构建了Na,K-ATPase与蛋白酶体之间的蛋白质-蛋白质相互作用网络,然后检查了用槟榔蟾蜍精处理的HeLa细胞中可能的中间蛋白质ataxin-1和翻译控制的肿瘤蛋白质的表达。槟榔蟾蜍精诱导HeLa细胞凋亡和G2 / M细胞周期停滞。槟榔蟾蜍精的细胞毒性作用与25种不同表达的蛋白有关,包括蛋白酶体相关蛋白,钙离子结合相关蛋白,氧化应激相关蛋白,代谢相关酶等。计算分子对接的结果表明,nobubuginin结合在Na跨膜α亚基K-ATPase形成的腔中,从而阻断了细胞外Na + / K +

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