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pH 对丙酮酸脱氢酶激酶 3 结构和功能的影响:光谱和 MD 模拟研究的结合。

Effect of pH on the structure and function of pyruvate dehydrogenase kinase 3: Combined spectroscopic and MD simulation studies.

机构信息

Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, Jamia Nagar, New Delhi 110025, India.

Fritz Haber Center for Molecular Dynamic Research, Hebrew University of Jerusalem, Israel.

出版信息

Int J Biol Macromol. 2020 Mar 15;147:768-777. doi: 10.1016/j.ijbiomac.2020.01.218. Epub 2020 Jan 23.

Abstract

Pyruvate dehydrogenase kinase-3 (PDK3) plays important role in the glucose metabolism and is associated with cancer progression, and thus being considered as an attractive target for cancer therapy. In this study, we employed spectroscopic techniques to study the structural and conformational changes in the PDK3 at varying pH conditions ranging from pH 2.0 to 12.0. UV/Vis, fluorescence and circular dichroism spectroscopic measurements revealed that PDK3 maintains its native-like structure (both secondary and tertiary) in the alkaline conditions (pH 7.0-12.0). However, a significant loss in the structure was observed under acidic conditions (pH 2.0-6.0). The propensity of aggregate formation at pH 4.0 was estimated by thioflavin T fluorescence measurements. To further complement structural data, kinase activity assay was performed, and maximum activity of PDK3 was observed at pH 7.0-8.0 range; whereas, its activity was lost under acidic pH. To further see conformational changes at atomistic level we have performed all-atom molecular dynamics at different pH conditions for 150 ns. A well defined correlation was observed between experimental and computational studies. This work highlights the significance of structural dependence of pH for wide implications in protein-protein interaction, biological function and drug design procedures.

摘要

丙酮酸脱氢酶激酶-3(PDK3)在葡萄糖代谢中发挥重要作用,与癌症进展相关,因此被认为是癌症治疗的有吸引力的靶点。在这项研究中,我们采用光谱技术研究了 PDK3 在从 pH 2.0 到 12.0 的不同 pH 条件下的结构和构象变化。紫外/可见、荧光和圆二色性光谱测量表明,PDK3 在碱性条件(pH 7.0-12.0)下保持其天然样结构(二级和三级结构)。然而,在酸性条件(pH 2.0-6.0)下观察到结构明显丢失。通过硫黄素 T 荧光测量估计了在 pH 4.0 下聚集形成的趋势。为了进一步补充结构数据,进行了激酶活性测定,发现 PDK3 的最大活性在 pH 7.0-8.0 范围内;然而,在酸性 pH 下其活性丧失。为了进一步在原子水平上观察构象变化,我们在不同 pH 条件下进行了 150 ns 的全原子分子动力学模拟。观察到实验和计算研究之间存在很好的相关性。这项工作强调了 pH 对蛋白质-蛋白质相互作用、生物功能和药物设计过程的广泛影响的结构依赖性的重要性。

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