Kim Y S, Kim Y I, Bang S K
Department of Biochemistry, College of Science, Yonsei University, Seoul, Korea.
J Protein Chem. 1991 Aug;10(4):407-13. doi: 10.1007/BF01025255.
Malonyl-CoA synthetase from Pseudomonas fluorescens was inactivated by diethylpyrocarbonate (DEP) with the second-order rate constant of 775 M-1 min-1 at pH 7.0, 25 degrees C, showing a concomitant increase in absorbance at 242 nm due to the formation of N-carbethoxyhistidyl derivatives. The inactivated enzyme at low concentration of DEP (less than 0.2 mM) could be completely reactivated by hydroxylamine but not completely reactivated at high concentration (greater than 0.5 mM), indicating that there may be another functional group modified by DEP. Complete inactivation of malonyl-CoA synthetase required the modification of seven residues per molecule of enzyme; however, only one is calculated to be essential for enzyme activity by a statistical analysis of the residual enzyme activity. pH dependence of inactivation indicated the involvement of a residue with a pK alpha of 6.7, which is closely related to that of histidyl residue of proteins. When alpha subunit treated with DEP was mixed with beta subunits complex, the enzyme activity completely disappeared, whereas when beta subunit complex treated with the reagent was mixed with alpha subunit, the activity remained. Inactivation of the enzyme by the reagent was protected by the presence of malonate and ATP. These results indicate that a catalytically essential histidyl residue is located at or near the malonate and ATP binding region on alpha subunit of the enzyme.
荧光假单胞菌的丙二酰辅酶A合成酶被焦碳酸二乙酯(DEP)灭活,在pH 7.0、25℃下二级反应速率常数为775 M-1 min-1,由于形成了N-乙氧羰基组氨酸衍生物,在242 nm处吸光度随之增加。低浓度DEP(小于0.2 mM)处理后的失活酶可被羟胺完全重新激活,但高浓度(大于0.5 mM)时不能完全重新激活,这表明可能有另一个官能团被DEP修饰。丙二酰辅酶A合成酶的完全失活需要每分子酶修饰七个残基;然而,通过对残余酶活性的统计分析,计算得出只有一个残基对酶活性至关重要。失活的pH依赖性表明涉及一个pKα为6.7的残基,这与蛋白质组氨酸残基的pKα密切相关。当用DEP处理的α亚基与β亚基复合物混合时,酶活性完全消失,而当用该试剂处理的β亚基复合物与α亚基混合时,活性仍然存在。丙二酸和ATP的存在可保护该试剂对酶的失活作用。这些结果表明,一个催化必需的组氨酸残基位于该酶α亚基上丙二酸和ATP结合区域或其附近。