Frigerio F, Margarit I, Nogarotto R, de Filippis V, Grandi G
Genetic Engineering and Microbiology Laboratories, ENIRICERCHE SpA, Milan, Italy.
Protein Eng. 1996 May;9(5):439-45. doi: 10.1093/protein/9.5.439.
Using genetically engineered mutants of the neutral protease from Bacillus stearothermophilus (BsteNP), it had been shown that the surface-exposed structural motif constituted by Phe63 embedded in a four amino acid hydrophobic pocket is critical for the thermal stability of the thermophilic neutral proteases from Bacilli. To measure the stabilizing contribution of each hydrophobic interaction taking place between Phe63 and the hydrophobic pocket, we grafted this structural motif in the neutral protease from the mesophile Bacillus subtilis (BsubNP). This was accomplished by first creating the Thr63-->Phe mutant of BsubNP and then generating a series of mutants in which the four amino acids which in thermolysin surround Phe63 and form the hydrophobic pocket were added one after the other. By analysing the thermal stability of each mutant it was found that the 2 degrees C destabilizing effect of the Thr63-->Phe substitution was completely suppressed by the addition of the four amino acid hydrophobic pocket, each replacement providing a stabilizing contribution of approximately 0.8-1 degrees C. These results are discussed in the light of the peculiar mechanism of thermal inactivation of proteolytic enzymes.
利用嗜热脂肪芽孢杆菌(BsteNP)中性蛋白酶的基因工程突变体,研究表明,由嵌入四氨基酸疏水口袋中的苯丙氨酸63构成的表面暴露结构基序对芽孢杆菌嗜热中性蛋白酶的热稳定性至关重要。为了测量苯丙氨酸63与疏水口袋之间发生的每种疏水相互作用的稳定作用,我们将此结构基序嫁接到嗜温枯草芽孢杆菌(BsubNP)的中性蛋白酶中。这是通过首先创建BsubNP的苏氨酸63→苯丙氨酸突变体,然后生成一系列突变体来实现的,在这些突变体中,嗜热菌蛋白酶中围绕苯丙氨酸63并形成疏水口袋的四个氨基酸依次添加。通过分析每个突变体的热稳定性,发现苏氨酸63→苯丙氨酸取代导致的2℃去稳定作用被四个氨基酸疏水口袋的添加完全抑制,每次取代提供约0.8-1℃的稳定作用。根据蛋白水解酶热失活的特殊机制对这些结果进行了讨论。