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Unfolding mechanics of holo- and apocalmodulin studied by the atomic force microscope

机译:原子力显微镜研究全钙和调钙调素的展开机理

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摘要

The structural stability of calmodulin (CaM) has been investigated previously by chemical and thermal methods. The calcium-loaded form of CaM has been found to be exceptionally stable, because it can be exposed to temperatures >90°C or to a 9 M urea solution without a marked change in its tertiary structure, and is therefore not experimentally accessible for unfolding studies using conventional analytical methods. In this study, we have developed a system for measuring the force for mechanically unfolding CaM using an atomic force microscope (AFM) by stretching the protein from its N- and C-terminal residues; we have been successful in obtaining force versus extension (F–E) curves for both apo and holo forms of CaM. In our experiment, distinguishable F–E curves have been obtained upon stretching of apoCaM and holoCaM to their full extensions. A very low force observed upon stretching of apoCaM indicated a relatively high flexibility of the apo form. On the contrary, a relatively high unfolding force and the appearance of a characteristic force peak were noted during full stretching of holoCaM. The F–E curve of the latter form of CaM most likely reflects a more rigid and probably more organized conformation of holoCaM than that of apoCaM. These experiments confirmed that the AFM is able to clearly distinguish two functionally distinct forms of CaM in terms of their mechanical properties.
机译:钙调蛋白(CaM)的结构稳定性先前已通过化学和热方法进行了研究。已经发现钙负载的CaM形式非常稳定,因为它可以暴露于> 90°C的温度或9M尿素溶液中,而其三级结构没有明显变化,因此实验上无法解开使用常规分析方法进行研究。在这项研究中,我们开发了一种系统,该系统使用原子力显微镜(AFM)通过从蛋白质的N端和C端残基中拉伸蛋白质来测量CaM机械展开的力;我们已经成功获得了CaM的载脂蛋白和全环形式的力-延伸(F-E)曲线。在我们的实验中,通过将apoCaM和holoCaM拉伸至其全部延伸,可获得明显的F–E曲线。拉伸载脂蛋白CaM时观察到的非常低的力表明载脂蛋白形式的相对较高的柔韧性。相反,在holoCaM的完全拉伸过程中观察到较高的展开力和特征力峰的出现。后一种形式的CaM的F–E曲线最可能反映了aloCaM的刚性比apoCaM更为僵化,并且可能更有组织。这些实验证实,AFM能够根据其机械性能清楚地区分两种功能上不同的CaM。

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