Reeves H C, Messmer L, Decker K
Arch Microbiol. 1976 Dec 1;111(1-2):111-5. doi: 10.1007/BF00446557.
Resting cell suspensions of Arthrobacter oxidans were shown to synthesize the inducible enantiozyme, D-6-hydroxynicotine oxidase, in the presence of D-nicotine or D-6-hydroxynicotine. The corresponding L-enantiomers, as well as gamma-methylaminopropyl-(6-OH-pyridyl-3)-ketone, which is the product of the reaction catalyzed by the enzyme, were ineffective as inducers. L-6-Hydroxynicotine inhibited induction by D-nicotine and D-6-hydroxynicotine while L-nicotine inhibited induction by D-6-hydroxynicotine and had no effect on induction by D-nicotine. Enzyme induction was also found to be inhibited by glucose, 2-deoxy-D-glucose and by several intermediates of the tricarboxylic acid cycle. An absolute requirement for protein synthesis and for oxygen was also demonstrated to be necessary for the reactions involved in the covalent attachment of flavin adenine dinucleotide to pre-existing precursor protein to yield the catalytically active D-6-hydroxynicotine oxidase.
研究表明,氧化节杆菌的静止细胞悬浮液在D-尼古丁或D-6-羟基尼古丁存在的情况下会合成可诱导的对映体酶D-6-羟基尼古丁氧化酶。相应的L-对映体以及该酶催化反应的产物γ-甲基氨基丙基-(6-羟基吡啶-3)-酮作为诱导剂无效。L-6-羟基尼古丁抑制D-尼古丁和D-6-羟基尼古丁的诱导作用,而L-尼古丁抑制D-6-羟基尼古丁的诱导作用,对D-尼古丁的诱导作用无影响。还发现葡萄糖、2-脱氧-D-葡萄糖和三羧酸循环的几种中间产物会抑制酶的诱导作用。黄素腺嘌呤二核苷酸与预先存在的前体蛋白共价连接以产生具有催化活性的D-6-羟基尼古丁氧化酶的反应,也被证明绝对需要蛋白质合成和氧气。