Nic a'Bháird N, Yankovskaya V, Ramsay R R
Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94143 USA.
Biochem J. 1998 Mar 1;330 ( Pt 2)(Pt 2):1029-36. doi: 10.1042/bj3301029.
The carnitine acyltransferases which catalyse the reversible transfer of fatty acyl groups between carnitine and coenzyme A have been proposed to contain a catalytic histidine. Here, the chemical reactivity of active site groups has been used to demonstrate differences between the active sites of beef liver carnitine octanoyltransferase (COT) and carnitine palmitoyltransferase-II (CPT-II). Treatment of CPT-II with the histidine-selective reagent, diethyl pyrocarbonate (DEPC), resulted in simple linear pseudo-first-order kinetics. The reversal of the inhibition by hydroxylamine and the pKa (7.1) of the modified residue indicated that the residue was a histidine. The order of the inactivation kinetics showed that 1mol of histidine was modified per mol of CPT-II. When COT was treated with DEPC the kinetics of inhibition were biphasic with an initial rapid loss of activity followed by a slower loss of activity. The residue reacting in the faster phase of inhibition was not a histidine but possibly a serine. The modification of this residue did not lead to complete loss of activity suggesting that a direct role in catalysis is unlikely. It was deduced that the residue modified by DEPC in the slower phase was a lysine and indeed fluorodinitrobenzene (FDNB) inactivated COT with linear pseudo-first-order kinetics. The COT peptide containing the FDNB-labelled lysine was isolated and sequenced. Alignment of this sequence placed it 10 amino acids downstream of the putative active-site histidine.
催化脂肪酸酰基在肉碱和辅酶A之间可逆转移的肉碱酰基转移酶被认为含有一个催化性组氨酸。在此,活性位点基团的化学反应性被用于证明牛肉肝肉碱辛酰转移酶(COT)和肉碱棕榈酰转移酶-II(CPT-II)活性位点之间的差异。用组氨酸选择性试剂焦碳酸二乙酯(DEPC)处理CPT-II,产生简单的线性假一级动力学。羟胺对抑制作用的逆转以及修饰残基的pKa(7.1)表明该残基是一个组氨酸。失活动力学的顺序表明每摩尔CPT-II有1摩尔组氨酸被修饰。当用DEPC处理COT时,抑制动力学是双相的,最初活性迅速丧失,随后活性丧失较慢。在抑制较快阶段发生反应的残基不是组氨酸,可能是丝氨酸。该残基的修饰并未导致活性完全丧失,这表明其在催化中不太可能起直接作用。据推断,在较慢阶段被DEPC修饰的残基是一个赖氨酸,事实上,氟二硝基苯(FDNB)使COT失活呈现线性假一级动力学。分离并测序了含有FDNB标记赖氨酸的COT肽段。该序列比对显示它位于假定活性位点组氨酸下游10个氨基酸处。