Duy Cihangir, Fitter Jörg
Forschungszentrum Jülich, IBI-2, Biologische Strukturforschung, Jülich, Germany.
J Biol Chem. 2005 Nov 11;280(45):37360-5. doi: 10.1074/jbc.M507530200. Epub 2005 Sep 2.
For most multidomain proteins the thermal unfolding transitions are accompanied by an irreversible step, often related to aggregation at elevated temperatures. As a consequence the analysis of thermostabilities in terms of equilibrium thermodynamics is not applicable, at least not if the irreversible process is fast with respect the structural unfolding transition. In a comparative study we investigated aggregation effects and unfolding kinetics for five homologous alpha-amylases, all from mesophilic sources but with rather different thermostabilities. The results indicate that for all enzymes the irreversible process is fast and the precedent unfolding transition is the rate-limiting step. In this case the kinetic barrier toward unfolding, as measured by unfolding rates as function of temperature, is the key feature in thermostability. The investigated enzymes exhibit activation energies (E(a)) between 208 and 364 kJmol(-1) and pronounced differences in the corresponding unfolding rates. The most thermostable alpha-amylase from Bacillus licheniformis (apparent transition temperature, T(1/2) approximately 100 degrees C) shows an unfolding rate which is four orders of magnitude smaller as compared with the alpha-amylase from pig pancreas (T(1/2) approximately 65 degrees C). Even with respect to two other alpha-amylases from Bacillus species (T(1/2) approximately 86 degrees C) the difference in unfolding rates is still two orders of magnitude.
对于大多数多结构域蛋白质而言,热解折叠转变伴随着一个不可逆步骤,这通常与高温下的聚集有关。因此,至少在不可逆过程相对于结构解折叠转变较快的情况下,基于平衡热力学对热稳定性进行分析并不适用。在一项比较研究中,我们研究了五种同源α-淀粉酶的聚集效应和解折叠动力学,这些酶均来自嗜温菌源,但热稳定性差异较大。结果表明,对于所有酶来说,不可逆过程都很快,先前的解折叠转变是限速步骤。在这种情况下,以解折叠速率作为温度函数测得的解折叠动力学屏障是热稳定性的关键特征。所研究的酶表现出的活化能(E(a))在208至364 kJmol(-1)之间,且相应的解折叠速率存在显著差异。来自地衣芽孢杆菌的最耐热α-淀粉酶(表观转变温度,T(1/2)约为100℃)的解折叠速率与猪胰腺α-淀粉酶(T(1/2)约为65℃)相比小四个数量级。即使与另外两种来自芽孢杆菌属的α-淀粉酶(T(1/2)约为86℃)相比,解折叠速率的差异仍有两个数量级。