Department of Plant Pathology, University of Hawaii, 3190 Maile Way, Honolulu, Hawaii 96822.
Plant Physiol. 1972 May;49(5):808-12. doi: 10.1104/pp.49.5.808.
A chlorosis-inducing toxin of Pseudomonas phaseolicola was examined for inhibition of ornithine carbamoyltransferease prepared from acetone powder of bean (Phaseolus vulgaris L.) plants. The enzyme has a pH optimum at 8.5, involves a ternary complex reaction mechanism, and shows Michaelis constants of 5.0 mm and 1.7 mm for ornithine and carbamoylphosphate, respectively. Assuming reversible catalysis, Michaelas constants of 11 mm and 3.3 mm are calculated for citrulline and arsenate. Toxin induces allosteric competitive inhibition in relation to carbamoylphosphate and a noncompetitive mode of inhibition in relation to ornithine, except at high toxin concentrations where uncompetitive inhibition is observed. In the backward assay, competitive inhibition is observed for both arsenate and citrulline. Inhibition is increased with preincubation time and shows saturation kinetics with regard to toxin concentration.
菜豆假单胞菌诱导植物缺铁黄化的毒素对由丙酮粉制备的鸟氨酸氨甲酰转移酶进行了研究。该酶的 pH 最适值为 8.5,涉及三元复合物反应机制,对鸟氨酸和氨甲酰磷酸的米氏常数分别为 5.0mm 和 1.7mm。假设可逆催化,计算出瓜氨酸和砷酸盐的米氏常数分别为 11mm 和 3.3mm。毒素诱导与氨甲酰磷酸的变构竞争性抑制,以及与鸟氨酸的非竞争性抑制模式,除了在高毒素浓度下观察到非竞争性抑制。在后向测定中,砷酸盐和瓜氨酸均观察到竞争性抑制。抑制作用随预孵育时间增加,并显示出对毒素浓度的饱和动力学。