Mukherji S, Bhaduri A
J Biol Chem. 1986 Apr 5;261(10):4519-24.
UDP-glucose 4-epimerase from Saccharomyces fragilis was inactivated by the arginine-specific reagents phenylglyoxal, 1,2-cyclohexanedione, and 2,3-butanedione following pseudo first order reaction kinetics. The reaction order with respect to phenylglyoxal was 1.8 and that with respect to the other two diones was close to unity. Protection afforded by substrate and competitive inhibitors against inactivation by phenylglyoxal and the reduced interaction of 1-anilinonaphthalene 8-sulfonic acid, a fluorescent probe for the substrate-binding region after phenylglyoxal modification, suggested the presence of an essential arginine residue at the substrate-binding region. Experiments with [7-14C]phenylglyoxal in the presence of UMP, a ligand known to interact at the substrate-binding region, showed that only the arginine residue at the active site could be modified by phenylglyoxal. The characteristic coenzyme fluorescence of the yeast enzyme was found to be enhanced three times in phenylglyoxal-inactivated enzyme suggesting the incorporation of the phenyl ring near the pyridine moiety of NAD.
脆壁酵母的UDP-葡萄糖4-表异构酶被精氨酸特异性试剂苯乙二醛、1,2-环己二酮和2,3-丁二酮按照准一级反应动力学灭活。相对于苯乙二醛的反应级数为1.8,相对于其他两种二酮的反应级数接近1。底物和竞争性抑制剂对苯乙二醛灭活的保护作用以及苯乙二醛修饰后用于底物结合区域的荧光探针1-苯胺基萘-8-磺酸相互作用的减弱,表明在底物结合区域存在一个必需的精氨酸残基。在已知在底物结合区域相互作用的配体UMP存在下用[7-¹⁴C]苯乙二醛进行的实验表明,只有活性位点的精氨酸残基可被苯乙二醛修饰。发现酵母酶的特征性辅酶荧光在苯乙二醛灭活的酶中增强了三倍,这表明苯环并入了NAD吡啶部分附近。