Olsson B, Olsson J, Pettersson G
Eur J Biochem. 1976 Dec 11;71(2):375-82. doi: 10.1111/j.1432-1033.1976.tb11124.x.
Reduction of benzylamine oxidase by p-methoxybenzylamine under anaerobic conditions leads to biphasic absorbance changes at 470 nm. These reflect the intermediate formation of an enzyme substrate complex with spectral properties different from those of native enzyme and fully reduced enzyme. The spectrally modified enzyme-substrate complex exhibits a broad difference absorption band centered around 360 nm. The transient accumulation of this intermediate during reaction can be conveniently followed by stopped-flow techniques at wavelengths between 320 and 360 nm, where contributions from the subsequent reduction of the enzymic 470-nm chromophore are of minor significance. 2. Analogous intermediates exhibiting similar absorption spectra seem to be formed on reduction of the enzyme by benzylamine and other amine substrates which were tested. Substitution of benzylamine as the reducing substrate by [alpha, alpha-2H]benzylamine results in a decreased accumulation of the spectrally modified intermediate. This indicates that its formation is preceded by deprotonation of the alpha-carbon of the amine substrate. 3. Circular dichroism spectra of benzylamine oxidase exhibit a positive band at 360 nm, lending support to the previous conclusion that benzylamine oxidase is a pyridoxal enzyme. Formation of the spectrally modified enzyme-substrate complex then most likely reflects the prototropic shift converting an amine-pyridoxal Schiff-base obtained by rapid pre-equilibration between enzyme and substrate into an aldehyde-pyridoxamine Schiff-base.
在厌氧条件下,对甲氧基苄胺使苄胺氧化酶减少,导致在470nm处出现双相吸光度变化。这些变化反映了一种酶-底物复合物中间体的形成,其光谱性质不同于天然酶和完全还原酶的光谱性质。经光谱修饰的酶-底物复合物呈现出一个以360nm为中心的宽差异吸收带。在反应过程中,这种中间体的瞬时积累可以通过停流技术在320至360nm波长之间方便地跟踪,在此波长范围内,酶的470nm发色团随后还原所产生的贡献较小。2. 在苄胺和其他测试的胺底物还原该酶时,似乎会形成具有相似吸收光谱的类似中间体。用[α,α-2H]苄胺替代苄胺作为还原底物,会导致经光谱修饰的中间体积累减少。这表明其形成之前胺底物的α-碳发生了去质子化。3. 苄胺氧化酶的圆二色光谱在360nm处呈现一个正带,支持了之前关于苄胺氧化酶是一种吡哆醛酶的结论。经光谱修饰的酶-底物复合物的形成很可能反映了质子转移,即将通过酶与底物之间快速预平衡获得的胺-吡哆醛席夫碱转化为醛-吡哆胺席夫碱。