Patanjali S R, Swamy M J, Anantharam V, Khan M I, Surolia A
Biochem J. 1984 Feb 1;217(3):773-81. doi: 10.1042/bj2170773.
The galactose-binding lectin from the seeds of the jequirity plant (Abrus precatorius) was subjected to various chemical modifications in order to detect the amino acid residues involved in its binding activity. Modification of lysine, tyrosine, arginine, histidine, glutamic acid and aspartic acid residues did not affect the carbohydrate-binding activity of the agglutinin. However, modification of tryptophan residues carried out in native and denaturing conditions with N-bromosuccinimide and 2-hydroxy-5-nitrobenzyl bromide led to a complete loss of its carbohydrate-binding activity. Under denaturing conditions 30 tryptophan residues/molecule were modified by both reagents, whereas only 16 and 18 residues/molecule were available for modification by N-bromosuccinimide and 2-hydroxy-5-nitrobenzyl bromide respectively under native conditions. The relative loss in haemagglutinating activity after the modification of tryptophan residues indicates that two residues/molecule are required for the carbohydrate-binding activity of the agglutinin. A partial protection was observed in the presence of saturating concentrations of lactose (0.15 M). The decrease in fluorescence intensity of Abrus agglutinin on modification of tryptophan residues is linear in the absence of lactose and shows a biphasic pattern in the presence of lactose, indicating that tryptophan residues go from a similar to a different molecular environment on saccharide binding. The secondary structure of the protein remains practically unchanged upon modification of tryptophan residues, as indicated by c.d. and immunodiffusion studies, confirming that the loss in activity is due to modification only.
为了检测相思子(Abrus precatorius)种子中的半乳糖结合凝集素参与其结合活性的氨基酸残基,对该凝集素进行了各种化学修饰。赖氨酸、酪氨酸、精氨酸、组氨酸、谷氨酸和天冬氨酸残基的修饰不影响凝集素的碳水化合物结合活性。然而,在天然和变性条件下用N-溴代琥珀酰亚胺和2-羟基-5-硝基苄基溴对色氨酸残基进行修饰,导致其碳水化合物结合活性完全丧失。在变性条件下,两种试剂修饰的色氨酸残基为每分子30个,而在天然条件下,N-溴代琥珀酰亚胺和2-羟基-5-硝基苄基溴分别修饰的色氨酸残基仅为每分子16个和18个。色氨酸残基修饰后血凝活性的相对损失表明,凝集素的碳水化合物结合活性需要每分子两个残基。在饱和浓度的乳糖(0.15M)存在下观察到部分保护作用。在没有乳糖的情况下,相思子凝集素色氨酸残基修饰后荧光强度的降低呈线性,而在有乳糖的情况下呈双相模式,这表明色氨酸残基在糖类结合时从相似的分子环境转变为不同的分子环境。如圆二色光谱和免疫扩散研究所示,色氨酸残基修饰后蛋白质的二级结构基本保持不变,证实活性丧失仅是由于修饰所致。