Jang Hyeung Jin, Lee Chang-Hun, Lee Weontae, Kim Yu Sam
Department of Biochemistry, College of Science, Protein Network Research Center, Yonsei University, Seoul 120-749, Korea.
J Biochem Mol Biol. 2002 Sep 30;35(5):498-507. doi: 10.5483/bmbrep.2002.35.5.498.
A gene that encodes a thermostable protease, coined thermicin, has been isolated from Thermoanaerobacter yonseiensis that is expressed and characterized in E. coli. In order to elucidate the molecular characteristics on thermostability of the enzyme, molecular modeling and mutagenesis technology were applied. In the modeling structure, the structural core, including the active site, was well conserved; whereas, the two loop regions were unique when compared to thermitase. The mutant enzyme with the small loop deleted (D190-I196), based on modeling structural information, showed identical enzyme activity. However, when the large loop was deleted (P233-P244), a little lower K(m) and even a lower kcat was found. This indicates that the large loop could influence catalytic activity. However, the unfolding temperature (T(m)), which was determined by a differential-scanning calorimetry for the mutant enzyme deleted the small loop, was 96 degrees C. This is 14 degrees C lower than that for the parent thermicin. These results suggest that the small loop may play a role in maintaining the proper folding of the enzyme at high temperatures, whereas the large loop might be related to catalysis.
从延世热厌氧杆菌中分离出了一个编码热稳定蛋白酶(命名为嗜热菌素)的基因,该基因在大肠杆菌中表达并进行了特性分析。为了阐明该酶热稳定性的分子特征,应用了分子建模和诱变技术。在建模结构中,包括活性位点在内的结构核心保存完好;然而,与嗜热芽孢杆菌蛋白酶相比,两个环区是独特的。基于建模结构信息,缺失小环(D190 - I196)的突变酶显示出相同的酶活性。但是,当缺失大环(P233 - P244)时,发现K(m)略低,kcat甚至更低。这表明大环可能影响催化活性。然而,通过差示扫描量热法测定的缺失小环的突变酶的解链温度(T(m))为96℃。这比亲本嗜热菌素低14℃。这些结果表明,小环可能在高温下维持酶的正确折叠中起作用,而大环可能与催化作用有关。