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NMR investigations on residue level unfolding thermodynamics in DLC8 dimer by temperature dependent native state hydrogen exchange

机译:通过温度依赖性本构态氢交换对DLC8二聚体中残留水平展开热力学的NMR研究

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Understanding protein stability at residue level detail in the native state ensemble of a protein is crucial to understanding its biological function. At the same time, deriving thermodynamic parameters using conventional spectroscopic and calorimetric techniques remains a major challenge for some proteins due to protein aggregation and irreversibility of denaturation at higher temperature values. In this regard, we describe here the NMR investigations on the conformational stabilities and related thermodynamic parameters such as local unfolding enthalpies, heat capacities and transition midpoints in DLC8 dimer, by using temperature dependent native state hydrogen exchange; this protein aggregates at high (>65°C) temperatures. The stability (free energy) of the native state was found to vary substantially with temperature at every residue. Significant differences were found in the thermodynamic parameters at individual residue sites indicating that the local environments in the protein structure would respond differently to external perturbations; this reflects on plasticity differences in different regions of the protein. Further, comparison of this data with similar data obtained from GdnHCl dependent native state hydrogen exchange indicated many similarities at residue level, suggesting that local unfolding transitions may be similar in both the cases. This has implications for the folding/unfolding mechanisms of the protein.
机译:了解蛋白质天然状态整体中残基水平的蛋白质稳定性对于了解其生物学功能至关重要。同时,由于蛋白质的聚集和在较高温度下变性的不可逆性,使用常规的光谱和量热技术得出热力学参数仍然是一些蛋白质面临的主要挑战。在这方面,我们在这里描述NMR研究构象稳定性和相关的热力学参数,如DLC8二聚体中的局部展开焓,热容和过渡中点,方法是使用依赖于温度的原始态氢交换。这种蛋白质在高温(> 65°C)时会聚集。发现天然状态的稳定性(自由能)在每个残基处都随温度而显着变化。在各个残基位点的热力学参数中发现了显着差异,这表明蛋白质结构中的局部环境对外部扰动的反应将有所不同。这反映了蛋白质不同区域的可塑性差异。此外,将该数据与从依赖GdnHCl的天然氢交换得到的相似数据进行比较,表明在残基水平上存在许多相似之处,这表明在两种情况下,局部展开过渡可能相似。这对蛋白质的折叠/展开机制有影响。

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