首页> 外文期刊>Journal of Molecular Biology >Residue-specific analysis of frustration in the folding landscape of repeat beta/alpha protein apoflavodoxin.
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Residue-specific analysis of frustration in the folding landscape of repeat beta/alpha protein apoflavodoxin.

机译:重复β/α蛋白载脂蛋白减少折叠现象中的挫折感的残基特异性分析。

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摘要

Flavodoxin adopts the common repeat beta/alpha topology and folds in a complex kinetic reaction with intermediates. To better understand this reaction, we analyzed a set of Desulfovibrio desulfuricans apoflavodoxin variants with point mutations in most secondary structure elements by in vitro and in silico methods. By equilibrium unfolding experiments, we first revealed how different secondary structure elements contribute to overall protein resistance to heat and urea. Next, using stopped-flow mixing coupled with far-UV circular dichroism, we probed how individual residues affect the amount of structure formed in the experimentally detected burst-phase intermediate. Together with in silico folding route analysis of the same point-mutated variants and computation of growth in nucleation size during early folding, computer simulations suggested the presence of two competing folding nuclei at opposite sides of the central beta-strand 3 (i.e., at beta-strands 1 and 4), which cause early topological frustration (i.e., misfolding) in the folding landscape. Particularly, the extent of heterogeneity in folding nuclei growth correlates with the in vitro burst-phase circular dichroism amplitude. In addition, phi-value analysis (in vitro and in silico) of the overall folding barrier to apoflavodoxin's native state revealed that native-like interactions in most of the beta-strands must form in transition state. Our study reveals that an imbalanced competition between the two sides of apoflavodoxin's central beta-sheet directs initial misfolding, while proper alignment on both sides of beta-strand 3 is necessary for productive folding.
机译:黄酮毒素采用常见的重复β/α拓扑结构,并与中间体发生复杂的动力学反应而折叠。为了更好地理解该反应,我们通过体外和计算机模拟方法分析了一组在大多数二级结构元件中具有点突变的脱硫弧菌脱硫尿蛋白载脂蛋白毒素变异体。通过平衡展开实验,我们首先揭示了不同的二级结构元素如何促进蛋白质对热量和尿素的总体抵抗力。接下来,使用停流混合与远紫外圆二色性,我们探究了单个残基如何影响在实验检测到的猝发相中间体中形成的结构量。结合对相同点突变体的计算机折叠路径分析以及早期折叠过程中成核尺寸增长的计算,计算机模拟表明,在中央β链3的相对侧(即在β处)存在两个竞争的折叠核-1和4线),这会导致折叠景观中的早期拓扑结构受挫(即,错误折叠)。特别地,折叠核生长中的异质性程度与体外猝发相圆二色性振幅相关。此外,对载黄脱伏伏毒素的天然状态的整体折叠障碍的phi值分析(体外和计算机分析)表明,大多数β链中的天然样相互作用必须在过渡状态下形成。我们的研究表明,载脂蛋白毒素中央β-折叠片的两侧之间的不平衡竞争会导致初始错误折叠,而β-链3两侧的正确对齐对于有效折叠是必需的。

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