Inouye K
Biotechnology Research Laboratories, Tosoh Corporation, Kanagawa.
J Biochem. 1992 Sep;112(3):335-40. doi: 10.1093/oxfordjournals.jbchem.a123901.
It has been reported that neutral salts such as NaCl activate the thermolysin-catalyzed hydrolysis of substrates containing glycine at the P1 position (carboxylic side of the cleavage bond) [Holmquist, B. & Vallee, B.L. (1976) Biochemistry 15, 101-107]. In this paper, we demonstrate that high concentrations (1-4 M) of neutral salts greatly enhance the thermolysin activity in both hydrolysis and synthesis of N-carbobenzoxy-L-aspartyl-L-phenylalanine methyl ester (ZAPM), a precursor of a peptide sweetener, aspartame, in which the L-aspartyl residue is the P1 residue. The enzyme activity is enhanced with an increase in salt concentration in a pseudo-exponential fashion. The degree of activation by salts was in the order LiCl > NaCl > KCl. The rate of ZAPM hydrolysis in the presence of 3.8 M NaCl was 6-7 times higher than that in its absence, and 50 times or more activation is expected in saturated NaCl solution. The activation is brought about solely through an increase in the catalytic constant (kcat), and the Michaelis constant (Km) is not affected at all by the presence of NaCl. On mixing thermolysin with NaCl, a unique absorption difference spectrum suggesting a conformational change of the enzyme was observed. The intensity increased in a pseudo-exponential fashion with increase of NaCl concentration up to 3 M, and this dependence is similar to that of the enzyme activity.
据报道,诸如氯化钠之类的中性盐可激活嗜热菌蛋白酶催化的对在P1位置(裂解键的羧基侧)含有甘氨酸的底物的水解反应[霍尔姆奎斯特,B.和瓦利,B.L.(1976年)《生物化学》15,101 - 107]。在本文中,我们证明高浓度(1 - 4M)的中性盐极大地增强了嗜热菌蛋白酶在肽甜味剂阿斯巴甜的前体N - 苄氧羰基 - L - 天冬氨酰 - L - 苯丙氨酸甲酯(ZAPM)的水解和合成反应中的活性,其中L - 天冬氨酰残基是P1残基。酶活性随盐浓度增加以假指数方式增强。盐的激活程度顺序为LiCl>NaCl>KCl。在3.8M氯化钠存在下ZAPM的水解速率比不存在时高6 - 7倍,预计在饱和氯化钠溶液中激活倍数可达50倍或更高。这种激活完全是通过催化常数(kcat)的增加实现的,米氏常数(Km)完全不受氯化钠存在的影响。将嗜热菌蛋白酶与氯化钠混合时,观察到一个独特的吸收差异光谱,表明该酶发生了构象变化。随着氯化钠浓度增加至3M,强度以假指数方式增加,这种依赖性与酶活性的依赖性相似。