Collins Tony, Meuwis Marie-Alice, Gerday Charles, Feller Georges
Laboratory of Biochemistry, Institute of Chemistry B6, University of Liège, B-4000 Liège, Belgium.
J Mol Biol. 2003 Apr 25;328(2):419-28. doi: 10.1016/s0022-2836(03)00287-0.
To elucidate the strategy of low temperature adaptation for a cold-adapted family 8 xylanase, the thermal and chemical stabilities, thermal inactivation, thermodependence of activity and conformational flexibility, as well as the thermodynamic basis of these processes, were compared with those of a thermophilic homolog. Differential scanning calorimetry, fluorescence monitoring of guanidine hydrochloride unfolding and fluorescence quenching were used, among other techniques, to show that the cold-adapted enzyme is characterized by a high activity at low temperatures, a poor stability and a high flexibility. In contrast, the thermophilic enzyme is shown to have a reduced low temperature activity, high stability and a reduced flexibility. These findings agree with the hypothesis that cold-adapted enzymes overcome the quandary imposed by low temperature environments via a global or local increase in the flexibility of their molecular edifice, with this in turn leading to a reduced stability. Analysis of the guanidine hydrochloride unfolding, as well as the thermodynamic parameters of irreversible thermal unfolding and thermal inactivation shows that the driving force for this denaturation and inactivation is a large entropy change while a low enthalpy change is implicated in the low temperature activity. A reduced number of salt-bridges are believed to be responsible for both these effects. Guanidine hydrochloride unfolding studies also indicate that both family 8 enzymes unfold via an intermediate prone to aggregation.
为阐明冷适应8家族木聚糖酶的低温适应策略,将其热稳定性、化学稳定性、热失活、活性的温度依赖性和构象灵活性以及这些过程的热力学基础与嗜热同源物进行了比较。采用差示扫描量热法、盐酸胍展开的荧光监测和荧光猝灭等技术表明,冷适应酶的特点是在低温下具有高活性、稳定性差和灵活性高。相比之下,嗜热酶在低温下活性降低、稳定性高且灵活性降低。这些发现与以下假设一致:冷适应酶通过其分子结构灵活性的整体或局部增加来克服低温环境带来的困境,进而导致稳定性降低。对盐酸胍展开以及不可逆热展开和热失活的热力学参数分析表明,但焓变较小与低温活性有关。盐桥数量减少被认为是造成这两种效应的原因。盐酸胍展开研究还表明,8家族的两种酶均通过易于聚集的中间体展开。