Rosengarth A, Rösgen J, Hinz H J
Institut für Physikalische Chemie, Münster, Germany.
Eur J Biochem. 1999 Sep;264(3):989-95. doi: 10.1046/j.1432-1327.1999.00712.x.
We describe the guanidinium hydrochloride induced folding kinetics of the four-helix-bundle protein Rop wild-type (wt) under equilibrium conditions at three temperatures. The choice of appropriate denaturant conditions inside the transition range permitted, in combination with equilibrium transition curves, the determination of both unfolding and refolding rate constants. The ratio of the rate constants at zero denaturant concentration provided equilibrium constants and standard free energy changes that are in good agreement with values obtained in previous differential scanning calorimetry studies. The DeltaG0D values for 19, 25 and 40 degrees C calculated from the present kinetic studies are, respectively, 66.8, 70.8 and 57.2 kJ.mol-1. The unfolding reactions are extremely slow under these conditions. Equilibrium was reached only after 18, 12 and 6 days at 19, 25 and 40 degrees C. These results demonstrate that for Rop wt high stability correlates with slow folding kinetics.
我们描述了在三个温度的平衡条件下,盐酸胍诱导的四螺旋束蛋白Rop野生型(wt)的折叠动力学。在转变范围内选择合适的变性剂条件,结合平衡转变曲线,可以确定解折叠和重折叠速率常数。零变性剂浓度下速率常数的比值提供了平衡常数和标准自由能变化,这些与先前差示扫描量热法研究中获得的值高度一致。根据目前的动力学研究计算得出的19、25和40摄氏度下的ΔG0D值分别为66.8、70.8和57.2 kJ·mol-1。在这些条件下,解折叠反应极其缓慢。在19、25和40摄氏度下,分别仅在18、12和6天后达到平衡。这些结果表明,对于Rop wt,高稳定性与缓慢的折叠动力学相关。