Szyperski Thomas, Mills Jeffrey L, Perl Dieter, Balbach Jochen
Department of Chemistry, The State University of New York, Buffalo, NY 14260, USA.
Eur Biophys J. 2006 Apr;35(4):363-6. doi: 10.1007/s00249-005-0028-4. Epub 2005 Oct 21.
Cold and heat denaturation of the double mutant Arg 3-->Glu/Leu 66-->Glu of cold shock protein Csp of Bacillus caldolyticus was monitored using 1D (1)H NMR spectroscopy in the temperature range from -12 degrees C in supercooled water up to +70 degrees C. The fraction of unfolded protein, f (u), was determined as a function of the temperature. The data characterizing the unfolding transitions could be consistently interpreted in the framework of two-state models: cold and heat denaturation temperatures were determined to be -11 degrees C and 39 degrees C, respectively. A joint fit to both cold and heat transition data enabled the accurate spectroscopic determination of the heat capacity difference between native and denatured state, DeltaC(p) of unfolding. The approach described in this letter, or a variant thereof, is generally applicable and promises to be of value for routine studies of protein folding.
利用一维¹H NMR光谱,在从过冷水中的-12℃到+70℃的温度范围内,监测嗜热栖热芽孢杆菌冷休克蛋白Csp的双突变体Arg 3→Glu/Leu 66→Glu的冷热变性。确定未折叠蛋白的比例f(u)作为温度的函数。表征变性转变的数据可以在两态模型的框架内得到一致解释:冷变性温度和热变性温度分别确定为-11℃和39℃。对冷热转变数据进行联合拟合,能够通过光谱准确测定天然态和变性态之间的热容差ΔC(p)。本文所述方法或其变体具有普遍适用性,有望在蛋白质折叠的常规研究中发挥作用。