Sanda A, Irie M
J Biochem. 1980 Apr;87(4):1079-87.
Tryptophan residues in ribonuclease from a Rhizopus sp. (RNase Rh) were modified by NBS, H2O2-dioxane, o-nitrophenylsulfenyl chloride (NPS-Cl) and the relation between the extent of modification and enzymatic activity was studied in each case. By extrapolation of the modified tryptophan residue-enzymatic activity curve to a completely inactive state, it was found that modification of 1-2 tryptophan residues is responsible for loss of enzymatic activity. RNase Rh was partly protected from modification by H2O2-dioxane (pH 8.4) and NPS-Cl (pH 3.5) when in the presence of 2'-AMP and the fluorescence emission spectrum of RNase Rh was quenched by adding 2'-AMP. It seems, therefore, that 1 or 2 tryptophan residues are involved in the active site of RNase Rh or are located near the active site. The solvent perturbation difference spectra of RNase Rh were measured using ethylene glycol and D2O as perturbants. The results indicated that 1.2 tryptophan residues for D2O and 1.9 tryptophan residues for ethylene glycol were exposed to the solvents. These data show that about 1.2-1.9 tryptophan residues are exposed to the solvent and their modification causes loss in enzymatic activity.
来自根霉属某菌株的核糖核酸酶(RNase Rh)中的色氨酸残基用N-溴代琥珀酰亚胺(NBS)、过氧化氢-二氧六环、邻硝基苯硫酰氯(NPS-Cl)进行修饰,并分别研究了修饰程度与酶活性之间的关系。通过将修饰的色氨酸残基-酶活性曲线外推至完全无活性状态,发现1-2个色氨酸残基的修饰导致酶活性丧失。当存在2'-AMP时,RNase Rh受到过氧化氢-二氧六环(pH 8.4)和NPS-Cl(pH 3.5)修饰的部分保护,并且添加2'-AMP会使RNase Rh的荧光发射光谱猝灭。因此,似乎1或2个色氨酸残基参与了RNase Rh的活性位点或位于活性位点附近。使用乙二醇和重水(D2O)作为扰动剂测量了RNase Rh的溶剂扰动差光谱。结果表明,对于重水有1.2个色氨酸残基、对于乙二醇有1.9个色氨酸残基暴露于溶剂中。这些数据表明约1.2-1.9个色氨酸残基暴露于溶剂中,并且它们的修饰导致酶活性丧失。