Kawamura T, Ichihara N, Sugiyama S, Yokota H, Ishimoto N, Ito E
J Biochem. 1985 Jul;98(1):105-16. doi: 10.1093/oxfordjournals.jbchem.a135248.
The occurrence and formation of UDP-N-acetyl-D-glucosaminuronic acid (UDP-GlcNAcA) and UDP-N-acetyl-D-mannosaminuronic acid (UDP-ManNAcA) were studied in Micrococcus luteus ATCC 4698. UDP-N-acetylhexosaminuronic acid separated from D-cycloserine-inhibited cells was shown to be a mixture of UDP-GlcNAcA and UDP-ManNAcA in the ratio of 87:13, whereas that obtained from untreated cells was a 96:4 mixture of these two nucleotides. Crude enzyme preparations obtained from the supernatant fraction of cells catalyzed the NAD+-dependent conversion of UDP-GlcNAc into UDP-GlcNAcA and UDP-ManNAcA. Studies on the partial separation and properties of enzymes revealed that UDP-GlcNAcA is synthesized directly from UDP-GlcNAc by the action of UDP-GlcNAc dehydrogenase and that UDP-ManNAcA is synthesized from UDP-GlcNAc through the successive actions of UDP-GlcNAc 2-epimerase and UDP-ManNAc dehydrogenase. However, enzymatic conversion of UDP-GlcNAcA to UDP-ManNAcA was not detected. Ammonium sulfate protects both dehydrogenases from inactivation during storage and incubation. Partially purified UDP-GlcNAc dehydrogenase required dithiothreitol and the particulate fraction for its full activity. The apparent Km values of UDP-GlcNAc dehydrogenase for UDP-GlcNAc and NAD+ were 0.28 and 1.43 mM, respectively. The optimum pH of this enzyme was higher than 9 in Tris-HCl buffer. p-Chloromercuribenzoate at 27 microM as well as 10 mM ethanol almost completely inhibited the UDP-GlcNAc dehydrogenase reaction.
在藤黄微球菌ATCC 4698中研究了UDP-N-乙酰-D-葡糖胺糖醛酸(UDP-GlcNAcA)和UDP-N-乙酰-D-甘露糖胺糖醛酸(UDP-ManNAcA)的产生和形成。从D-环丝氨酸抑制的细胞中分离出的UDP-N-乙酰己糖胺糖醛酸是UDP-GlcNAcA和UDP-ManNAcA的混合物,其比例为87:13,而从未经处理的细胞中获得的是这两种核苷酸的96:4混合物。从细胞的上清液部分获得的粗酶制剂催化了UDP-GlcNAc的NAD⁺依赖性转化为UDP-GlcNAcA和UDP-ManNAcA。对酶的部分分离和性质的研究表明,UDP-GlcNAcA是由UDP-GlcNAc脱氢酶的作用直接从UDP-GlcNAc合成的,而UDP-ManNAcA是通过UDP-GlcNAc 2-表异构酶和UDP-ManNAc脱氢酶的连续作用从UDP-GlcNAc合成的。然而,未检测到UDP-GlcNAcA向UDP-ManNAcA的酶促转化。硫酸铵在储存和孵育过程中保护两种脱氢酶不被灭活。部分纯化的UDP-GlcNAc脱氢酶需要二硫苏糖醇和颗粒部分才能发挥其全部活性。UDP-GlcNAc脱氢酶对UDP-GlcNAc和NAD⁺的表观Km值分别为0.28和1.43 mM。在Tris-HCl缓冲液中,该酶的最适pH高于9。27 microM的对氯汞苯甲酸以及10 mM乙醇几乎完全抑制了UDP-GlcNAc脱氢酶反应。