首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Staphylococcal protein A: Unfolding pathways, unfolded states, and differences between the B and E domains
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Staphylococcal protein A: Unfolding pathways, unfolded states, and differences between the B and E domains

机译:葡萄球菌蛋白A:展开​​途径,展开状态,以及B和E域之间的差异

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We present multiple native and denaturation simulations of the B and E domains of the three-helix bund le protein A, totaling 60 ns. The C-terminal helix (H3) consistently denatures later than either of the other two helices and contains residual helical structure in the denatured state. These results are consistent with experiments suggesting that the isolated H3 fragment is more stable than H1 and H2 and that H3 forms early in folding. lnterestingly, the denatured state of the B domain is much more compact than that of the E domain. This sequence-dependent effect on the dimen- sions of the denatured state and the lack of correlation with structure suggest that the radius of gyration can be a misleading reaction coordinate for unfolding/folding. Various unfolding and refolding events are observed in the denaturation simulations. In some cases, the transitions are facilitated through interactions with other portions of the protein--contact-assisted helix forma- tion. In the native simulations, the E domain is very stable: after 6 ns, the C~α root-mean-square deviation from the starting structure is less than 1.4 A. In contrast. the native state of the B domain deviates more and its inter-helical angles fluctuate. In apparent contrast, we note that the B domain is thermodynamically more stable than the E domain. The simulations Suggest that the in- creased stability of the B domain may be due to heightened mobility, and therefore entropy, in the native state and decreased mobility/entropy in the more compact denatured state.
机译:我们提出了三个螺旋蛋白质A的B和E域的多个自然和变性模拟,总计60 ns。 C末端螺旋(H3)始终比其他两个螺旋之一迟变性,并在变性状态下包含残留的螺旋结构。这些结果与表明分离的H3片段比H1和H2更稳定并且H3在折叠早期形成的实验一致。有趣的是,B结构域的变性状态比E结构域的变性状态紧凑得多。这种对变性状态维数的序列依赖性效应以及与结构的缺乏相关性表明,回转半径可能是误解性的展开/折叠反应坐标。在变性模拟中观察到各种展开和重折叠事件。在某些情况下,过渡是通过与蛋白质的其他部分相互作用(接触辅助螺旋形成)而促进的。在本地模拟中,E域非常稳定:6 ns后,与起始结构的C〜α均方根偏差小于1.4A。相反。 B域的原始状态会发生更大的偏离,并且其螺旋间角会发生波动。明显地,我们注意到B结构域在热力学上比E结构域更稳定。模拟结果表明,B结构域稳定性的提高可能归因于原始状态下迁移率的提高,因此熵的增加,而变性状态更紧凑时迁移率/熵的降低。

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