Department of Chemistry, University of Wisconsin-Madison , Madison, Wisconsin 53706, United States.
J Am Chem Soc. 2017 Sep 27;139(38):13292-13295. doi: 10.1021/jacs.7b07930. Epub 2017 Sep 12.
We describe the use of thioester exchange equilibria to measure the propensities of amino acid residues to participate in helical secondary structure at room temperature in the absence of denaturants. Thermally or chemically induced unfolding has previously been employed to measure α-helix propensities among proteinogenic α-amino acid residues, and quantitative comparison with precedents indicates that the thioester exchange system is reliable for residues that lack side chain charge. This system allows the measurement of α-helix propensities for d-α-amino acid residues and propensities of residues with nonproteinogenic backbones, such as those derived from a β-amino acid, to participate in an α-helix-like secondary structure.
我们描述了硫酯交换平衡的使用,以测量在室温下无变性剂存在时氨基酸残基参与螺旋二级结构的倾向。以前曾使用热或化学诱导解折叠来测量蛋白质α-氨基酸残基中的α-螺旋倾向,与前人的定量比较表明,硫酯交换系统对于缺乏侧链电荷的残基是可靠的。该系统允许测量 d-α-氨基酸残基的α-螺旋倾向和非蛋白质骨架残基(如衍生自β-氨基酸的残基)参与类似α-螺旋的二级结构的倾向。