Baldwin G S, Davidson B E
Biochim Biophys Acta. 1983 Jan 26;742(2):374-83. doi: 10.1016/0167-4838(83)90324-2.
The effect of pH on chorismate mutase/prephenate dehydratase (chorismate pyruvate mutase/prephenate hydro-lyase (decarboxylating) EC 5.4.99.5/EC 4.2.1.51) from Escherichia coli K12 has been studied. While the maximum velocity of both activities is independent of pH, Km for chorismate or prephenate shows a complex pH dependence. Differences in mutase activity in acetate/phosphate/borate and citrate/phosphate/borate buffers were traced to inhibition by citrate. When a variety of analogues of citrate were tested as possible inhibitors of the enzyme, several were found to inhibit mutase and dehydratase activities to different extents, and by different mechanisms. Thus citrate competitively inhibits mutase activity, but inhibits dehydratase activity by either a non-competitive or an uncompetitive mechanism. Conversely, cis- and trans-aconitate competitively inhibit dehydratase activity, but are partially competitive inhibitors of mutase activity. The differential effects of these inhibitors on the two activities are consistent with the existence of two distinct active sites, but additionally suggest some degree of interconnection between them. The implications of these results for possible mechanisms of catalysis by chorismate mutase/prephenate dehydratase are discussed.
研究了pH对来自大肠杆菌K12的分支酸变位酶/预苯酸脱水酶(分支酸丙酮酸变位酶/预苯酸水解酶(脱羧),EC 5.4.99.5/EC 4.2.1.51)的影响。虽然两种活性的最大速度与pH无关,但分支酸或预苯酸的Km显示出复杂的pH依赖性。在乙酸盐/磷酸盐/硼酸盐和柠檬酸盐/磷酸盐/硼酸盐缓冲液中变位酶活性的差异可追溯到柠檬酸盐的抑制作用。当测试多种柠檬酸盐类似物作为该酶的可能抑制剂时,发现其中几种对变位酶和脱水酶活性有不同程度的抑制作用,且作用机制不同。因此,柠檬酸盐竞争性抑制变位酶活性,但通过非竞争性或反竞争性机制抑制脱水酶活性。相反,顺乌头酸和反乌头酸竞争性抑制脱水酶活性,但对变位酶活性是部分竞争性抑制剂。这些抑制剂对两种活性的不同影响与存在两个不同的活性位点一致,但另外表明它们之间存在一定程度的相互联系。讨论了这些结果对分支酸变位酶/预苯酸脱水酶可能的催化机制的意义。