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Electrostatic optimization of the conformational energy landscape in a metamorphic protein

机译:静电优化变质蛋白的构象能态

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The equilibrium unfolding reaction of Ltn, a metamorphic C-class chemokine, was monitored by tryptophan fluorescence to determine unfolding free energies. Measurements revealed that addition of 150 mM NaCl stabilized the Ltn chemokine fold by approximately 1 kcal/mol. Specific mutations involving Arg23 and Arg43 also increased the stability by 1 kcal/mol, suggesting their involvement in chloride ion coordination. This interaction was confirmed by nuclear magnetic resonance (NMR) salt titration studies that revealed chemical shift perturbations localized to these residues and backbone amides within the proximal 40s loop. The effects of NaCl on the free energy landscape were further verified by ZZ-exchange NMR spectroscopy. Our results suggest that changes in the electrostatic environment modulate the Gibbs free energy of folding and alter the forward and reverse rates of interconversion. These results demonstrate how solution ions can promote metamorphic folding by adjusting the relative stabilities of two unrelated Ltn native-state structures.
机译:通过色氨酸荧光监测Ltn(一种变质的C类趋化因子)的平衡展开反应,以确定展开的自由能。测量结果表明,添加150 mM NaCl可使Ltn趋化因子折叠稳定约1 kcal / mol。涉及Arg23和Arg43的特定突变也使稳定性提高了1 kcal / mol,表明它们参与了氯离子的配位。核磁共振(NMR)盐滴定研究证实了这种相互作用,该研究揭示了在40s环近端定位于这些残基和主链酰胺的化学位移扰动。 NaCl对自由能态的影响已通过ZZ交换NMR光谱进一步证实。我们的结果表明,静电环境的变化调节了吉布斯折叠的自由能,并改变了相互转换的正向和反向速率。这些结果证明了溶液离子如何通过调节两个不相关的Ltn本征态结构的相对稳定性来促进变质折叠。

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