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The energetics of a three-state protein folding system probed by high-pressure relaxation dispersion NMR from 1 to 2500 bar

机译:通过1至2500 bar的高压弛豫分散NMR探测三态蛋白质折叠系统的能量

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摘要

The energetic and volumetric properties of a three-state protein folding system, comprising a metastable triple mutant of the Fyn SH3 domain, have been investigated using pressure-dependent 15N-relaxation dispersion NMR from 1 to 2500 bar. Changes in partial molar volumes (ΔV) and isothermal compressibilities (ΔκT) between all the states along the folding pathway have been determined to reasonable accuracy. The partial volume and isothermal compressibility of the folded state are ~100 ml·mol−1 and ~40 µl·mol−1·bar−1, respectively, higher than those of the unfolded ensemble. Of particular interest are the findings related to the energetic and volumetric properties of the on-pathway folding intermediate. While the latter is energetically close to the unfolded state, its volumetric properties are similar to those of the folded protein. The compressibility of the intermediate is larger than that of the folded state reflecting the less rigid nature of the former relative to the latter.
机译:使用从1到2500 bar的压力依赖性 15 N弛豫弥散NMR研究了包含Fyn SH3域亚稳三重突变体的三态蛋白质折叠系统的能量和体积性质。已经确定了沿折叠路径的所有状态之间的部分摩尔体积(ΔV)和等温压缩率(ΔκT)的变化,具有合理的准确性。折叠状态的部分体积和等温压缩率分别为〜100 ml·mol -1 和〜40 µl·mol -1 ·bar -1 分别高于展开的合奏。特别令人感兴趣的是与途中折叠中间体的能量和体积性质有关的发现。后者在能量上接近未折叠状态,但其体积特性与折叠蛋白相似。中间体的可压缩性大于折叠状态的可压缩性,这反映了前者相对于后者的刚性较小。

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