Poklar N, Vesnaver G, Lapanje S
Department of Chemistry, University of Ljubljana, Slovenia.
J Protein Chem. 1995 Nov;14(8):709-19. doi: 10.1007/BF01886910.
The effects of pH, urea, and alkylureas on the thermal stability of alpha-chymotrypsinogen A (alpha-ctg A) have been investigated by differential scanning calorimetry (DSC) and UV spectroscopy. Heat capacity changes and enthalpies of transition of alpha-ctg A in the presence of urea and alkylureas were measured at the transition temperature. Using these data, the corresponding Gibbs free energies, enthalpies, and entropies of denaturation at 25 degrees C were calculated. Comparison of these values shows that at 25 degrees C denaturation with urea is characterized by a significantly smaller enthalpy and entropy of denaturation. At all denaturant concentrations the enthalpy term slightly dominates the entropy term in the Gibbs free energy function. The most obvious effect of alkylureas was lowering of the temperature of transition, which was increasing with alkylurea concentration and the size of alkyl chain. Destabilization of the folded protein in the presence of alkylureas appears to be primarily the result of the weakening of hydrophobic interactions due to diminished solvent ordering around the protein-molecules. At pH lower than 2.0, alpha-ctg A still exists in a very stable form, probably the acid-denatured from (A-form).
通过差示扫描量热法(DSC)和紫外光谱法研究了pH值、尿素和烷基脲对α-胰凝乳蛋白酶原A(α-ctg A)热稳定性的影响。在转变温度下测量了α-ctg A在尿素和烷基脲存在下的热容变化和转变焓。利用这些数据,计算了25℃时相应的变性吉布斯自由能、焓和熵。这些值的比较表明,在25℃时,尿素变性的特征是变性焓和熵明显较小。在所有变性剂浓度下,吉布斯自由能函数中的焓项略微主导熵项。烷基脲最明显的作用是降低转变温度,该温度随烷基脲浓度和烷基链长度的增加而升高。在烷基脲存在下折叠蛋白的不稳定似乎主要是由于蛋白质分子周围溶剂有序性降低导致疏水相互作用减弱的结果。在pH低于2.0时,α-ctg A仍以非常稳定的形式存在,可能是酸变性形式(A形式)。