Department of Biochemistry and Genetics, Connecticut Agricultural Experiment Station, P. O. Box 1106, New Haven, Connecticut 06504.
Plant Physiol. 1983 Apr;71(4):874-8. doi: 10.1104/pp.71.4.874.
The enzymic oxidation of glycolate to glyoxylate and glyoxylate to oxalate by preparations purified from tobacco (Nicotiana tabacum var Havana Seed) leaves was studied. The K(m) values for glycolate and glyoxylate were 0.26 and 1.0 millimolar, respectively. The ratio of glycolate to glyoxylate oxidation was 3 to 4 in crude extracts but decreased to 1.2 to 1.5 on purification by (NH(4))(2)SO(4) fractionation and chromatography on agarose A-15 and hydroxylapatite. This level of glyoxylate oxidation activity was higher than that previously found for glycolate oxidase (EC 1.1.3.1). The ratio of the two activities was changed by reaction with the substrate analog 2-hydroxy-3-butynoate (HBA) which at all concentrations inhibited glyoxylate oxidation to a greater extent than glycolate oxidation. The ratio of the two activities could also be altered by changing the O(2) concentration. Glycolate oxidation increased 3.6-fold when the O(2) atmosphere was increased from 21 to 100%, whereas glyoxylate oxidation increased only 1.6-fold under the same conditions. These changes in ratio during purification, on inhibition by HBA, and under varying O(2) concentrations imply that tobacco leaves contain at least two enzymes capable of oxidizing glycolate and glyoxylate.
我们研究了从烟草(Nicotiana tabacum var Havana Seed)叶片中纯化出的酶制剂对甘醇酸到乙醛酸和乙醛酸到草酸的酶促氧化作用。甘醇酸和乙醛酸的 K(m) 值分别为 0.26 和 1.0 毫摩尔。在粗提物中,甘醇酸与乙醛酸的氧化比例为 3 比 4,但通过(NH(4))(2)SO(4)分级分离和琼脂糖 A-15 和羟基磷灰石层析纯化后,该比例降至 1.2 比 1.5。这种乙醛酸氧化活性水平高于先前发现的甘醇酸氧化酶(EC 1.1.3.1)。两种活性的比例可以通过与底物类似物 2-羟基-3-丁炔酸(HBA)反应来改变,HBA 在所有浓度下对乙醛酸氧化的抑制程度都大于甘醇酸氧化。两种活性的比例也可以通过改变 O(2)浓度来改变。当 O(2)气氛从 21%增加到 100%时,甘醇酸氧化增加了 3.6 倍,而在相同条件下,乙醛酸氧化仅增加了 1.6 倍。在纯化过程中、在 HBA 抑制时以及在不同 O(2)浓度下的这些比例变化表明,烟草叶片至少含有两种能够氧化甘醇酸和乙醛酸的酶。