School of Biosciences and Biotechnology, University of Camerino, Camerino, MC, Italy.
Biochem Biophys Res Commun. 2013 Sep 6;438(4):715-20. doi: 10.1016/j.bbrc.2013.07.113. Epub 2013 Aug 2.
The eukaryotic α-amylase isolated from the psychrophilic ciliated protozoon Euplotes focardii (EfAmy) was expressed in Escherichia coli and biochemically characterized. Its enzymatic activity was compared to that of the homologous protein from the mesophilic congeneric species Euplotes crassus (EcAmy). The comparison of the amino acid composition and the surface residue composition of the two enzymes indicated a preference for tiny residues and the avoidance of charged, aromatic and hydrophobic residues in EfAmy. Our comparative homology modeling study reveals a lack of surface salt bridges, a decreased number of the surface charged residues, decreased hydrogen bonds and bound ions, and a reduction of aromatic-sulfur interactions, cationic-π interactions and disulfide interactions in EfAmy. In contrast, sequence alignment and homology modeling showed five unconserved prolines located on the surface loops of EcAmy. By analyzing amylolytic activity towards soluble starch as the substrate, we determined the temperature and pH dependence, thermostability and kinetic parameters of these two enzymes. We demonstrated that EfAmy shows the characteristics of a psychrophilic α-amylase, such as the highest hydrolytic activity at low temperatures and high thermolability. In contrast, the EcAmy showed mesophilic characteristics with the highest activity at moderate temperatures and a more than 2-fold increased half-life at 50°C compared to EfAmy. The kcat and KM values of EfAmy were higher than those of the mesophilic EcAmy at all tested temperatures. Furthermore, both EfAmy and EcAmy showed maximum activities at pH 9 and maintained high activities in the presence of surfactants. These results suggest the potential applications of EfAmy and EcAmy as ingredients in detergents for industrial applications.
从嗜冷纤毛原生动物 Euplotes focardii(EfAmy)中分离出的真核α-淀粉酶在大肠杆菌中表达,并进行了生化特性分析。将其酶活性与同属嗜温种 Euplotes crassus(EcAmy)的同源蛋白进行了比较。两种酶的氨基酸组成和表面残基组成的比较表明,EfAmy 偏爱微小残基,避免带电荷、芳香族和疏水性残基。我们的比较同源建模研究表明,EfAmy 缺乏表面盐桥、表面带电荷残基数量减少、氢键和结合离子减少、芳香族-硫相互作用、阳离子-π相互作用和二硫键相互作用减少。相比之下,序列比对和同源建模显示 EcAmy 表面环上有五个未保守的脯氨酸。通过分析以可溶性淀粉为底物的淀粉水解活性,我们确定了这两种酶的温度和 pH 依赖性、热稳定性和动力学参数。我们证明 EfAmy 具有嗜冷α-淀粉酶的特性,例如在低温下具有最高的水解活性和高的热不稳定性。相比之下,EcAmy 表现出嗜温特性,在中等温度下具有最高活性,在 50°C 下半衰期比 EfAmy 增加了两倍以上。EfAmy 的 kcat 和 KM 值在所有测试温度下均高于嗜温 EcAmy。此外,EfAmy 和 EcAmy 在 pH 9 时均表现出最大活性,并在存在表面活性剂时保持高活性。这些结果表明 EfAmy 和 EcAmy 具有作为工业应用洗涤剂成分的应用潜力。