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黄连素通过在独特位点与微管蛋白结合干扰微管聚合,从而诱导HeLa细胞产生毒性。

Berberine Induces Toxicity in HeLa Cells through Perturbation of Microtubule Polymerization by Binding to Tubulin at a Unique Site.

作者信息

Raghav Darpan, Ashraf Shabeeba M, Mohan Lakshmi, Rathinasamy Krishnan

机构信息

School of Biotechnology, National Institute of Technology Calicut , Calicut, Kerala, India.

出版信息

Biochemistry. 2017 May 23;56(20):2594-2611. doi: 10.1021/acs.biochem.7b00101. Epub 2017 May 4.

Abstract

Berberine has been used traditionally for its diverse pharmacological actions. It exhibits remarkable anticancer activities and is currently under clinical trials. In this study, we report that the anticancer activity of berberine could be partly due to its inhibitory actions on tubulin and microtubule assembly. Berberine inhibited the proliferation of HeLa cells with an IC of 18 μM and induced significant depolymerization of interphase and mitotic microtubules. At its IC, berberine exerted a moderate G2/M arrest and mitotic block as detected by fluorescence-activated cell sorting analysis and fluorescence microscopy, respectively. In a wound closure assay, berberine inhibited the migration of HeLa cells at concentrations lower than its IC, indicating its excellent potential as an anticancer agent. In vitro studies with tubulin isolated from goat brain indicated that berberine binds to tubulin at a single site with a K of 11 μM. Berberine inhibited the assembly of tubulin into microtubules and also disrupted the preformed microtubules polymerized in the presence of glutamate and paclitaxel. Competition experiments indicated that berberine could partially displace colchicine from its binding site. Results from fluorescence resonance energy transfer, computational docking, and molecular dynamics simulations suggest that berberine forms a stable complex with tubulin and binds at a novel site 24 Å from the colchicine site on the β-tubulin. Data obtained from synchronous fluorescence analysis of the tryptophan residues of tubulin and from the Fourier transform infrared spectroscopy studies revealed that binding of berberine alters the conformation of the tubulin heterodimer, which could be the molecular mechanism behind the depolymerizing effects on tubulin assembly.

摘要

黄连素传统上因其多种药理作用而被使用。它具有显著的抗癌活性,目前正处于临床试验阶段。在本研究中,我们报告黄连素的抗癌活性可能部分归因于其对微管蛋白和微管组装的抑制作用。黄连素以18 μM的半数抑制浓度(IC)抑制HeLa细胞的增殖,并诱导间期和有丝分裂期微管的显著解聚。在其半数抑制浓度下,通过荧光激活细胞分选分析和荧光显微镜分别检测到黄连素产生中度的G2/M期阻滞和有丝分裂阻滞。在伤口愈合试验中,黄连素在低于其半数抑制浓度的情况下抑制HeLa细胞的迁移,表明其作为抗癌剂具有优异的潜力。用从山羊脑中分离的微管蛋白进行的体外研究表明,黄连素以11 μM的解离常数(K)在单个位点与微管蛋白结合。黄连素抑制微管蛋白组装成微管,并破坏在谷氨酸和紫杉醇存在下聚合形成的预先形成的微管。竞争实验表明,黄连素可以部分地从其结合位点取代秋水仙碱。荧光共振能量转移、计算对接和分子动力学模拟的结果表明,黄连素与微管蛋白形成稳定的复合物,并结合在β-微管蛋白上距秋水仙碱位点24 Å的新位点。从微管蛋白色氨酸残基的同步荧光分析和傅里叶变换红外光谱研究获得的数据表明,黄连素的结合改变了微管蛋白异二聚体的构象,这可能是对微管蛋白组装产生解聚作用的分子机制。

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