Abramovitz A S, Massey V
J Biol Chem. 1976 Sep 10;251(17):5327-36.
Evidence is presented that the changes in absorption spectrum obtained on complex formation between Old Yellow Enzyme and phenolic compounds are due to charge-transfer interactions. The positive correlation between the energy of the long wavelength transition and the Hammett para constant with a series of para-substituted phenols indicates that the phenol is the charge-transfer donor and the oxidized flavin of the enzyme is the charge-transfer acceptor. The same conclusion is drawn from studies in which the flavin of the native enzyme, flavin mononucleotide, was replaced by a variety of artificial flavins of different oxidation-reduction potential. The effect of pH on the dissociation constant for the enzyme-ligand binding also indicates that it is the phenolate anion, rather than the conjugate acid, which is responsible for the charge-transfer interaction. The significance of these results is discussed relative to long wavelength absorbing species detected with other flavoproteins.
有证据表明,老黄色酶与酚类化合物形成复合物时吸收光谱的变化是由于电荷转移相互作用。一系列对取代酚的长波长跃迁能量与哈米特对位常数之间的正相关表明,酚是电荷转移供体,酶的氧化黄素是电荷转移受体。用具有不同氧化还原电位的多种人工黄素取代天然酶的黄素(黄素单核苷酸)的研究也得出了相同的结论。pH对酶-配体结合解离常数的影响也表明,负责电荷转移相互作用的是酚盐阴离子,而不是共轭酸。相对于用其他黄素蛋白检测到的长波长吸收物种,讨论了这些结果的意义。