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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Computer Simulations of the Refolding of Sperm Whale Apomyoglobin from High-Temperature Denaturated State
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Computer Simulations of the Refolding of Sperm Whale Apomyoglobin from High-Temperature Denaturated State

机译:高温变性状态下抹香鲸载脂蛋白重折叠的计算机模拟

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摘要

The refolding mechanism of apomyoglobin (apoMb) subsequent to high-temperature unfolding has been examined using computer simulations with atomic level detail. The folding of this protein has been extensively studied experimentally, providing a large database of folding parameters which can be probed using simulations. In the present study, 4-folding trajectories of apoMb were computed starting from coiled structures. A crystal structure of sperm whale myoglobin taken from the Protein Data Bank was used to construct the final native conformation by removal of the heme group followed by energy optimization. The initial unfolded conformations were obtained from high-temperature molecular dynamics simulations. Room-temperature refolding trajectories at neutral pH were obtained using the stochastic difference equation in length algorithm. The folding trajectories were compared with experimental results and two previous molecular dynamics studies at low pH. In contrast to the previous simulations, an extended intermediate with large helical content was not observed. In the present study, a structural collapse occurs without formation of helices or native contacts. Once the protein structure is more compact (radius of gyration < 18 A) secondary and tertiary structures appear. These results suggest that apoMb follows a different folding pathway after high-temperature denaturation.
机译:高温解折叠后的apomyoglobin(apoMb)的重折叠机制已使用具有原子水平细节的计算机模拟进行了检查。已经对该蛋白质的折叠进行了广泛的实验研究,从而提供了可使用模拟方法探测到的大量折叠参数数据库。在本研究中,从卷曲结构开始计算apoMb的4折轨迹。取自蛋白质数据库的抹香鲸肌红蛋白的晶体结构用于通过去除血红素基团,然后进行能量优化来构建最终的天然构象。初始的展开构象是从高温分子动力学模拟获得的。使用长度算法中的随机差分方程,获得了在中性pH下的室温重折叠轨迹。将折叠轨迹与实验结果以及先前在低pH下的两项分子动力学研究进行了比较。与以前的模拟相反,没有观察到具有大螺旋含量的扩展中间体。在本研究中,结构塌陷发生而没有螺旋或天然接触的形成。一旦蛋白质结构更加紧凑(回转半径<18 A),就会出现二级和三级结构。这些结果表明高温变性后,载脂蛋白Mb遵循不同的折叠途径。

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