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RhoA 转录信号抑制剂 CCG1423 与人血清白蛋白的相互作用:生物物理和计算研究。

Interactive association between RhoA transcriptional signaling inhibitor, CCG1423 and human serum albumin: Biophysical and in silico studies.

机构信息

a Biomolecular Research Group, Biochemistry Programme, Institute of Biological Sciences, Faculty of Science , University of Malaya , Kuala Lumpur , Malaysia.

b Bioinformatics Programme, Institute of Biological Sciences, Faculty of Science , University of Malaya , Kuala Lumpur , Malaysia.

出版信息

J Biomol Struct Dyn. 2018 Aug;36(10):2495-2507. doi: 10.1080/07391102.2017.1360207. Epub 2017 Aug 18.

Abstract

Multiple spectroscopic techniques, such as fluorescence, absorption, and circular dichroism along with in silico studies were used to characterize the binding of a potent inhibitor molecule, CCG1423 to the major transport protein, human serum albumin (HSA). Fluorescence and absorption spectroscopic results confirmed CCG1423-HSA complex formation. A strong binding affinity stabilized the CCG1423-HSA complex, as evident from the values of the binding constant (K = 1.35 × 10-5.43 × 10 M). The K values for CCG1423-HSA system were inversely correlated with temperature, suggesting the involvement of static quenching mechanism. Thermodynamic data anticipated that CCG1423-HSA complexation was mainly driven by hydrophobic and van der Waals forces as well as hydrogen bonds. In silico analysis also supported these results. Three-dimensional fluorescence and circular dichroism spectral analysis suggested microenvironmental perturbations around protein fluorophores and structural (secondary and tertiary) changes in the protein upon CCG1423 binding. CCG1423 binding to HSA also showed some protection against thermal denaturation. Site-specific marker-induced displacement results revealed CCG1423 binding to Sudlow's site I of HSA, which was also confirmed by the computational results. A few common ions were also found to interfere with the CCG1423-HSA interaction.

摘要

采用多种光谱技术,如荧光、吸收和圆二色性以及计算机模拟研究,来表征一种强效抑制剂分子 CCG1423 与人血清白蛋白(HSA)的主要转运蛋白的结合情况。荧光和吸收光谱结果证实了 CCG1423-HSA 复合物的形成。强结合亲和力稳定了 CCG1423-HSA 复合物,这可以从结合常数(K=1.35×10-5.43×10 M)的值中看出。CCG1423-HSA 体系的 K 值与温度呈反比关系,表明存在静态猝灭机制。热力学数据表明,CCG1423-HSA 络合主要由疏水和范德华力以及氢键驱动。计算机模拟分析也支持了这些结果。三维荧光和圆二色性光谱分析表明,CCG1423 结合后,蛋白质荧光团周围的微环境发生了扰动,蛋白质的结构(二级和三级)发生了变化。CCG1423 与 HSA 的结合也显示出对热变性的一些保护作用。位点特异性标记诱导的置换结果表明,CCG1423 结合到 HSA 的 Sudlow 位点 I,这也得到了计算结果的证实。一些常见离子也被发现会干扰 CCG1423-HSA 相互作用。

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