Tsong T Y
J Biol Chem. 1977 Dec 25;252(24):8778-80.
Several recent studies of protein the unfolded proteins. In urea- and guanidine HCl-unfolded ferricytochrome c (horse heart), an acid-induced spin state transformation of the heme group has been detected by the heme absorptions, Trp-59 fluorescence, and the intrinsic viscosity of protein. Kinetics of this second conformational transition, by the temperature jump and stopped flow methods, are complex. One rapid reaction (tau1), pH-independent, occurs in a 50-mus range; the second reaction (tau2), in a 1-ms range, depends linearly upon pH and is faster at the alkaline side; a third reaction (tau3), in a 1-s range, shows a sigmoidal transition at pH 5.1 and is faster at the acidic side. The results are consistent with a kinetic scheme which involves protein conformational changes in the transformation of the heme coordination state. The kinetics, along with previous equilibrium studies, indicate that ligand or charge interactions within a protein molecule are not completely prohibited even in strongly denaturing conditions, such as in high concentrations of urea and guanidine HCl. Thus, local structures of peptide chain associated with these interactions can exist in the unfolded protein.
最近有几项关于蛋白质中未折叠蛋白的研究。在尿素和盐酸胍展开的高铁细胞色素c(马心脏)中,通过血红素吸收、色氨酸-59荧光和蛋白质的特性粘度检测到了血红素基团的酸诱导自旋态转变。通过温度跳跃和停流方法对这种第二种构象转变的动力学研究结果很复杂。一个快速反应(τ1),与pH无关,发生在50微秒范围内;第二个反应(τ2),在1毫秒范围内,与pH呈线性相关,在碱性一侧更快;第三个反应(τ3),在1秒范围内,在pH 5.1处呈现S形转变,在酸性一侧更快。结果与一个动力学方案一致,该方案涉及血红素配位状态转变中的蛋白质构象变化。这些动力学结果,连同之前的平衡研究,表明即使在强变性条件下,如在高浓度尿素和盐酸胍中,蛋白质分子内的配体或电荷相互作用也不会完全被禁止。因此,与这些相互作用相关的肽链局部结构可以存在于未折叠的蛋白质中。