Yomo T, Sawai H, Urabe I, Yamada Y, Okada H
Department of Fermentation Technology, Faculty of Engineering, Osaka University, Japan.
Eur J Biochem. 1989 Feb 1;179(2):293-8. doi: 10.1111/j.1432-1033.1989.tb14554.x.
The following 1-substituted derivatives of 5-methylphenazine and 5-ethylphenazine were synthesized: 1-(3-carboxypropyloxy)-5-methylphenazine (1B), 1-(3-carboxypropyloxy)-5-ethylphenazine (2B), 1-(3-ethoxycarbonylpropyloxy)-5-ethylphenazine (2C) and 1-[N-(2-aminoethyl)carbamoylpropyloxy]-5-ethylphenazine (2D); their spectra, stability and reactivity as electron mediators were investigated, together with those of 5-methylphenazine (1A) and 5-ethylphenazine (2A). The 1-substituted derivatives are all insensitive to light and the derivatives of 5-ethylphenazine are more stable than those of 5-methylphenazine under neutral and alkaline conditions; 2B is the most stable of all the derivatives. The spectral properties of the decomposed compounds showed that photodecomposition of 1A and 2A is associated with hydroxylation at position 1, alkali decomposition of 1A and 1B with elimination of the 5-methyl group and alkali decomposition of 2A, 2B, and 2D with a ring-opening reaction. The second-order rate constant k1 for the reaction of the phenazine derivatives with NADH was measured under steady-state conditions. The k1 values vary depending on the substituents at positions 1 and 5: the values for 1A, 1B, 2A, 2B, 2C and 2D are 1.83 mM-1 s-1, 3.33 mM-1 s-1, 0.75 mM-1 s-1, 1.42 mM-1 s-1, 1.68 mM-1 s-1 and 2.03 mM-1 s-1, respectively. The rate constants, k2 and k3, for the reactions of the reduced form of 2B with oxygen and with 3-(4',5'-dimethylthiazole-2-yl)-2,5-diphenyltetrazolium ion, respectively, were k2 = 1.21 mM-1 s-1 and k3 = 91 mM-1 s-1. These phenazine derivatives have potential applications in the biochemical field.
合成了以下5-甲基吩嗪和5-乙基吩嗪的1-取代衍生物:1-(3-羧基丙氧基)-5-甲基吩嗪(1B)、1-(3-羧基丙氧基)-5-乙基吩嗪(2B)、1-(3-乙氧基羰基丙氧基)-5-乙基吩嗪(2C)和1-[N-(2-氨基乙基)氨甲酰丙氧基]-5-乙基吩嗪(2D);研究了它们作为电子介质的光谱、稳定性和反应活性,同时研究了5-甲基吩嗪(1A)和5-乙基吩嗪(2A)的相关性质。1-取代衍生物均对光不敏感,且在中性和碱性条件下,5-乙基吩嗪的衍生物比5-甲基吩嗪的衍生物更稳定;2B是所有衍生物中最稳定的。分解产物的光谱性质表明,1A和2A的光分解与1位的羟基化有关,1A和1B的碱分解与5-甲基的消除有关,2A、2B和2D的碱分解与开环反应有关。在稳态条件下测量了吩嗪衍生物与NADH反应的二级速率常数k1。k1值因1位和5位的取代基不同而变化:1A、1B、2A、2B、2C和2D的值分别为1.83 mM-1 s-1、3.33 mM-1 s-1、0.75 mM-1 s-1、1.42 mM-1 s-1、1.68 mM-1 s-1和2.03 mM-1 s-1。还原形式的2B与氧气以及与3-(4',5'-二甲基噻唑-2-基)-2,5-二苯基四氮唑离子反应的速率常数k2和k3分别为k2 = 1.21 mM-1 s-1和k3 = 91 mM-1 s-1。这些吩嗪衍生物在生化领域具有潜在应用。