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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >GdmCl-induced unfolding studies of human carbonic anhydrase IX: a combined spectroscopic and MD simulation approach
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GdmCl-induced unfolding studies of human carbonic anhydrase IX: a combined spectroscopic and MD simulation approach

机译:GDMCL诱导人碳酸酐酶IX的展开研究:一种综合光谱和MD仿真方法

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摘要

Carbonic anhydrase IX (CAIX) is a transmembrane glycoprotein, associated with tumor, acidification which leads to the cancer, and is considered as a potential biomarker for hypoxia-induced cancers. The overexpression of CAIX is linked with hypoxia condition which is mediated by the transcription of hypoxia-induced factor (HIF-1). To understand the biophysical properties of CAIX, we have carried out a reversible isothermal denaturation of CAIX-induced by GdmCl at pH 8.0 and 25 degrees C. Three different spectroscopic probes, the far-UV CD at 222 nm ([theta](222)), Trp fluorescence emission at 342 nm (F-342) and difference molar absorption coefficient at 287 nm (Delta epsilon(287)) were used to estimate stability parameters, Delta G(D)(0) (Gibbs free energy change in the absence of GdmCl; C-m (midpoint of the denaturation curve), i.e. molar GdmCl concentration ([GdmCl]) at which Delta G(D) = 0; and m, the slope (-partial derivative Delta G(D)/partial derivative[GdmCl])). GdmCl induces a reversible denaturation of CAIX. Coincidence of the normalized transition curves of all optical properties suggests that unfolding/refolding of CAIX is a two-state process. We further performed molecular dynamics simulation of CAIX for 40 ns to see the dynamics of protein structure in different GdmCl concentrations. An excellent agreement was observed between in silico and in vitro studies.
机译:碳酸酐酶IX(CAIX)是一种与肿瘤相关的跨膜糖蛋白,酸化导致癌症,被认为是缺氧诱导的癌症的潜在生物标志物。 CaIX的过度表达与缺氧病症有关,其被缺氧诱导的因子(HIF-1)的转录介导。为了了解CaIX的生物物理性质,我们已经在pH8.0和25℃下通过GDMCl进行了可逆等温变性,在pH8.0和25℃下进行3例不同的光谱探针,在222nm处的远紫外线Cd([θ(222) ),342nm(F-342)的TRP荧光发射和287nm的差摩尔吸收系数(Delta epsilon(287))用于估计稳定性参数,Delta g(d)(0)(Gibbs自由能变化没有gdmcl; cm(变性曲线的中点),即摩尔gdmcl浓度([gdmcl]),其中δg(d)= 0;和m,斜率( - 梯子衍生delta g(d)/部分衍生物[ gdmcl])))。 GdMCL诱导Caix的可逆变性。所有光学性质的归一化转换曲线的重合表明CAIX的展开/重折叠是一个双态过程。我们进一步对CAIX进行了分子动力学模拟40 ns,以便在不同GDMCL浓度下看到蛋白质结构的动态。在硅和体外研究之间观察到一致的一致性。

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