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BBL蛋白与外周亚基结合结构域同源物的协同折叠动力学

Cooperative folding kinetics of BBL protein and peripheral subunit-binding domain homologues.

作者信息

Yu Wookyung, Chung Kwanghoon, Cheon Mookyung, Heo Muyoung, Han Kyou-Hoon, Ham Sihyun, Chang Iksoo

机构信息

National Research Laboratory for Computational Proteomics and Biophysics, Department of Physics, Pusan National University, Busan 609-735, Korea.

出版信息

Proc Natl Acad Sci U S A. 2008 Feb 19;105(7):2397-402. doi: 10.1073/pnas.0708480105. Epub 2008 Feb 12.

Abstract

Recent experiments claiming that Naf-BBL protein follows a global downhill folding raised an important controversy as to the folding mechanism of fast-folding proteins. Under the global downhill folding scenario, not only do proteins undergo a gradual folding, but folding events along the continuous folding pathway also could be mapped out from the equilibrium denaturation experiment. Based on the exact calculation using a free energy landscape, relaxation eigenmodes from a master equation, and Monte Carlo simulation of an extended Muñoz-Eaton model that incorporates multiscale-heterogeneous pairwise interactions between amino acids, here we show that the very nature of a two-state cooperative transition such as a bimodal distribution from an exact free energy landscape and biphasic relaxation kinetics manifest in the thermodynamics and folding-unfolding kinetics of BBL and peripheral subunit-binding domain homologues. Our results provide an unequivocal resolution to the fundamental controversy related to the global downhill folding scheme, whose applicability to other proteins should be critically reexamined.

摘要

最近有实验声称Naf-BBL蛋白遵循整体下坡折叠,这引发了关于快速折叠蛋白折叠机制的重要争议。在整体下坡折叠的情况下,蛋白质不仅会经历逐渐折叠,而且沿着连续折叠途径的折叠事件也可以从平衡变性实验中描绘出来。基于使用自由能景观的精确计算、主方程的弛豫本征模以及包含氨基酸之间多尺度异质成对相互作用的扩展Muñoz-Eaton模型的蒙特卡罗模拟,我们在此表明,双态协同转变的本质,如来自精确自由能景观的双峰分布和双相弛豫动力学,体现在BBL和外周亚基结合域同源物的热力学和折叠-去折叠动力学中。我们的结果为与整体下坡折叠方案相关的基本争议提供了明确的解决方案,其对其他蛋白质的适用性应受到严格重新审视。

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本文引用的文献

1
Structural biology: analysis of protein-folding cooperativity.结构生物学:蛋白质折叠协同性分析
Nature. 2007 Feb 15;445(7129):E16-7; discussion E17-8. doi: 10.1038/nature05644.
2
Structural biology: analysis of 'downhill' protein folding.结构生物学:“下坡”蛋白质折叠分析
Nature. 2007 Feb 15;445(7129):E14-5; discussion E17-8. doi: 10.1038/nature05643.
5
Atom-by-atom analysis of global downhill protein folding.全局下坡蛋白质折叠的逐原子分析。
Nature. 2006 Jul 20;442(7100):317-21. doi: 10.1038/nature04859. Epub 2006 Jun 14.

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