Skolysheva L K, Vul'fson P L, Severin E S
Biokhimiia. 1977 Feb;42(2):243-50.
Interaction of phosphorylase B with diethylpyrocarbonate was studied. It was found that modification of the histidine residues is accompanied by a change in the adsorption spectrum of phosphorylase B at around 240--245 nm, as well as by inhibition of the enzyme activity. The addition of hydroxylamine to the modified protein results in an elimination of the absorption at round 240 nm and a complete restoration of the enzyme activity. The apparent constants of the phosphorylase B inactivation rates and the rates of the histidine residues modification are shown to be the values of the same order. In the presence of substrate (glucose-1-phosphate) one of the histidine residues (calculated per 1 subunit) does not enter the reaction with diethylpyrocarbonate, a protection of the enzyme against inactivation being observed. In the presence of activator (AMP) four histidine residues are inaccessible for diethylpyrocarbonate; however, the degree of inhibition of the enzyme activity does not change. The phosphorylase B molecule, modified in the presence of AMP, is incapable of dissociating into monomers.
研究了磷酸化酶B与焦碳酸二乙酯的相互作用。发现组氨酸残基的修饰伴随着磷酸化酶B在240 - 245nm左右吸收光谱的变化,以及酶活性的抑制。向修饰后的蛋白质中加入羟胺会导致240nm左右的吸收消除,并使酶活性完全恢复。磷酸化酶B失活速率和组氨酸残基修饰速率的表观常数显示为同一数量级的值。在底物(葡萄糖-1-磷酸)存在下,其中一个组氨酸残基(按每个亚基计算)不参与与焦碳酸二乙酯的反应,观察到酶受到保护而不被失活。在激活剂(AMP)存在下,四个组氨酸残基无法与焦碳酸二乙酯反应;然而,酶活性的抑制程度没有变化。在AMP存在下修饰的磷酸化酶B分子不能解离成单体。