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首页> 外文期刊>Journal of Molecular Biology >The folding transition state of protein L is extensive with nonnative interactions (and not small and polarized)
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The folding transition state of protein L is extensive with nonnative interactions (and not small and polarized)

机译:蛋白质L的折叠过渡态具有广泛的相互作用,且具有非天然相互作用(且不小的且极化)

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Progress in understanding protein folding relies heavily upon an interplay between experiment and theory. In particular, readily interpretable experimental data that can be meaningfully compared to simulations are required. According to standard mutational φ analysis, the transition state for Protein L contains only a single hairpin. However, we demonstrate here using ψ analysis with engineered metal ion binding sites that the transition state is extensive, containing the entire four-stranded β sheet. Underreporting of the structural content of the transition state by φ analysis also occurs for acyl phosphatase [Pandit, A. D., Jha, A., Freed, K. F. & Sosnick, T. R., (2006). Small proteins fold through transition states with native-like topologies. J. Mol. Biol. 361, 755-770], ubiquitin [Sosnick, T. R., Dothager, R. S. & Krantz, B. A., (2004). Differences in the folding transition state of ubiquitin indicated by φ and ψ analyses. Proc. Natl Acad. Sci. USA 101, 17377-17382] and BdpA [Baxa, M., Freed, K. F. & Sosnick, T. R., (2008). Quantifying the structural requirements of the folding transition state of protein A and other systems. J. Mol. Biol. 381, 1362-1381]. The carboxy-terminal hairpin in the transition state of Protein L is found to be nonnative, a significant result that agrees with our Protein Data Bank-based backbone sampling and all-atom simulations. The nonnative character partially explains the failure of accepted experimental and native-centric computational approaches to adequately describe the transition state. Hence, caution is required even when an apparent agreement exists between experiment and theory, thus highlighting the importance of having alternative methods for characterizing transition states.
机译:了解蛋白质折叠的进展很大程度上取决于实验和理论之间的相互作用。特别地,需要可以与模拟有意义地进行比较的易于解释的实验数据。根据标准突变φ分析,蛋白L的过渡态仅包含一个发夹。但是,我们在这里使用ψ分析和工程化的金属离子结合位点证明了​​过渡态是广泛的,包含整个四链β片。对于酰基磷酸酶,也通过φ分析报告了过渡态的结构含量不足[Pandit,A. D.,Jha,A.,Freed,K. F.&Sosnick,T. R.,(2006)。小蛋白质通过类似天然的拓扑结构折叠通过过渡态。 J.摩尔生物学361,755-770],遍在蛋白[Sosnick,T.R.,Dothager,R.S。和Krantz,B.A。,(2004)。 φ和ψ分析表明泛素的折叠过渡状态存在差异。进程Natl Acad。科学USA 101,17377-17382]和BdpA [Baxa,M.,Freed,K.F.&Sosnick,T.R.,(2008)。量化蛋白质A和其他系统的折叠过渡态的结构要求。 J.摩尔生物学381,1362-1381]。发现处于L蛋白过渡状态的羧基末端发夹是非天然的,这一重要结果与我们基于Protein Data Bank的骨干采样和全原子模拟相符。非本征字符部分地解释了公认的实验和以本机为中心的计算方法未能充分描述过渡状态的失败。因此,即使在实验和理论之间存在明显的共识时,也需要谨慎,从而凸显了采用替代方法表征过渡态的重要性。

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