Cao X M, Tian Y, Wang Z Y, Liu Y W, Wang C X
a Changsha Environmental Protection College , Changsha , China.
b Environmental Monitoring Center of Hunan Province , Changsha , China.
Bioengineered. 2016 Jul 3;7(4):235-40. doi: 10.1080/21655979.2016.1197629.
Thermal denaturation of lysozymes was studied as a function of protein concentration, phosphate buffer concentration, and scan rate using differential scanning calorimetry (DSC), which was then analyzed by the isoconversional method. The results showed that lysozyme thermal denaturation was only slightly affected by the protein concentration and scan rate. When the protein concentration and scan rate increased, the denaturation temperature (Tm) also increased accordingly. On the contrary, the Tm decreased with the increase of phosphate buffer concentration. The denaturation process of lysozymes was accelatated and the thermal stability was reduced with the increase of phosphate concentration. One part of degeneration process was not reversible where the aggregation occurred. The other part was reversible. The apparent activation energy (Ea) was computed by the isoconversional method. It decreased with the increase of the conversion ratio (α). The observed denaturation process could not be described by a simple reaction mechanism. It was not a process involving 2 standard reversible states, but a multi-step process. The new opportunities for investigating the kinetics process of protein denaturation can be supplied by this novel isoconversional method.
使用差示扫描量热法(DSC)研究了溶菌酶的热变性与蛋白质浓度、磷酸盐缓冲液浓度和扫描速率之间的关系,然后采用等转化率方法对其进行分析。结果表明,溶菌酶的热变性仅受蛋白质浓度和扫描速率的轻微影响。当蛋白质浓度和扫描速率增加时,变性温度(Tm)也相应升高。相反,Tm随磷酸盐缓冲液浓度的增加而降低。随着磷酸盐浓度的增加,溶菌酶的变性过程加速,热稳定性降低。变性过程的一部分在发生聚集时是不可逆的。另一部分是可逆的。通过等转化率方法计算了表观活化能(Ea)。它随转化率(α)的增加而降低。观察到的变性过程不能用简单的反应机理来描述。它不是一个涉及两个标准可逆状态的过程,而是一个多步过程。这种新颖的等转化率方法可以为研究蛋白质变性的动力学过程提供新的机会。