Nurbekov M K, Favorova O O, Dmitrenko S G, Bolotina I A, Kiselev L L
Mol Biol (Mosk). 1981 Sep-Oct;15(5):1000-10.
By means of atomic absorption spectroscopy up to 0.9 Zn2+ atom per molecule of bovine tryptophanyl-tRNA-synthetase (E. C. 6.1.1.2) was found. Treatment of the enzyme with orthophenanthroline (Zn2+-chelating agent) or prolonged dialysis leading to the removal of bound Zn2+ causes inactivation of the enzyme whereas the addition of Zn2+ reactivates it. Kinetic analysis of the inhibiting action of orthophenanthroline at various concentrations of tryptophan, ATP and tRNA leads to the conclusion that removal of Zn2+ prevents the binding of the ATP molecule to tryptophanyl-tRNA-synthetase. By means of chemical modification it is shown that exposed histidine residues and the carboxylic groups of the enzyme participate in Zn2+ binding. According to circular dichroism data removal of Zn2+ has no influence on the secondary structure although some local alterations of the ternary structure are revealed.
通过原子吸收光谱法发现,每分子牛色氨酰 - tRNA合成酶(E.C. 6.1.1.2)中含有高达0.9个锌离子。用邻菲罗啉(锌离子螯合剂)处理该酶或长时间透析以去除结合的锌离子会导致酶失活,而添加锌离子可使其重新激活。对不同浓度的色氨酸、ATP和tRNA时邻菲罗啉抑制作用的动力学分析得出结论,锌离子的去除会阻止ATP分子与色氨酰 - tRNA合成酶结合。通过化学修饰表明,酶中暴露的组氨酸残基和羧基参与锌离子的结合。根据圆二色性数据,锌离子的去除对二级结构没有影响,尽管揭示出三级结构有一些局部改变。