Uncovering the role of the flexible C-terminal tail: A model study with Strep-tagged GFP

Michael W. Lassalle , Shinobu Kondou
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引用次数: 1

Abstract

Recently, it has been recognized that, much like an electric current in an electric circuit, dynamic disruptions from flexible, unstructured regions distal to the active region are transferred through the contact network to the active site and influence protein stability and/or function. As transmembrane proteins frequently possess the β-barrel structure, studies of proteins with this topology are required. The unstructured lid segments of the β-barrel GFP protein are conserved and could play a role in the backbone stabilization required for chromophore function. A study of the disordered C-terminus and the function within the lid is necessary. In this study, we entirely truncated the flexible C-terminal tail and investigated the N-terminal Strep-tagged GFP by fluorescence spectroscopy, and the temperature- and GdnHCl-induced unfolding by circular dichroism. The introduction of the unstructured Strep-tag itself changed the unfolding pathway. Truncating the entire flexible tail did not decrease the fluorescence intensity to a large extent; however, the protein stability changed dramatically. The temperature for half-denaturation T1/2 changed significantly from 79 °C for the wild-type to 72.8 °C for the mutant. Unfolding kinetics at different temperatures have been induced by 4 M GdnHCl, and the apparent Arrhenius activation energy decreased by 40% as compared to the wild-type.

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揭示柔性c端尾部的作用:链球菌标记GFP的模型研究
最近,人们认识到,就像电路中的电流一样,活性区域远端的柔性非结构化区域的动态中断通过接触网络转移到活性位点,并影响蛋白质的稳定性和/或功能。由于跨膜蛋白经常具有β-桶结构,因此需要对具有这种拓扑结构的蛋白进行研究。β-桶状GFP蛋白的非结构盖段是保守的,可能在发色团功能所需的骨干稳定中起作用。对c端紊乱及其在盖内的功能进行研究是必要的。在这项研究中,我们完全截断了柔性的c端尾部,并通过荧光光谱研究了n端strep标记的GFP,并通过圆二色性研究了温度和gdnhcl诱导的展开。非结构化strep标签的引入本身改变了展开途径。截去整个柔性尾后,荧光强度并未明显降低;然而,蛋白质的稳定性发生了巨大的变化。半变性T1/2的温度从野生型的79°C显著变化到突变体的72.8°C。4 M GdnHCl诱导了不同温度下的展开动力学,表观阿伦尼乌斯活化能比野生型降低了40%。
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