Takagi K, Torimura M, Kawaguchi K, Kano K, Ikeda T
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Japan.
Biochemistry. 1999 May 25;38(21):6935-42. doi: 10.1021/bi9828268.
A new quinohemoprotein amine dehydrogenase from Paracoccus denitrificans IFO 12442 was isolated and characterized in views of biochemistry and electrochemistry. This enzyme exists in periplasm and catalyzes the oxidative deamination of primary aliphatic and aromatic amines. n-Butylamine or benzylamine as a carbon and energy source strongly induces the expression of the enzyme. Carbonyl reagents inhibit the enzyme activity irreversibly. This enzyme is a heterodimer constituted of alpha and beta subunits with the molecular mass of 59.5 and 36.5 kDa, respectively. UV-vis and EPR spectroscopy, and the quinone-dependent redox cycling and heme-dependent peroxidative stains of SDS-PAGE bands revealed that the alpha subunit contains one quinonoid cofactor and one heme c per molecule, while the beta subunit has no prosthetic group. The redox potential of the heme c moiety was determined to be 0.192 V vs NHE at pH 7.0 by a mediator-assisted continuous-flow column electrolytic spectroelectrochemical technique. The analysis of the substrate titration curve allowed the evaluation of the redox potential of the quinone/semiquinone and semiquinone/quinol redox couples as 0.19 and 0.11 V, respectively.
从反硝化副球菌IFO 12442中分离出一种新的醌血红蛋白胺脱氢酶,并从生物化学和电化学角度对其进行了表征。这种酶存在于周质中,催化伯脂肪胺和芳香胺的氧化脱氨反应。正丁胺或苄胺作为碳源和能源可强烈诱导该酶的表达。羰基试剂可不可逆地抑制该酶的活性。这种酶是一种异源二聚体,由α和β亚基组成,分子量分别为59.5 kDa和36.5 kDa。紫外可见光谱和电子顺磁共振光谱,以及SDS-PAGE条带的醌依赖性氧化还原循环和血红素依赖性过氧化物染色显示,α亚基每分子含有一个醌类辅因子和一个血红素c,而β亚基没有辅基。通过介质辅助连续流动柱电解光谱电化学技术测定,在pH 7.0时,血红素c部分的氧化还原电位相对于标准氢电极(NHE)为0.192 V。底物滴定曲线分析表明,醌/半醌和半醌/醌醇氧化还原对的氧化还原电位分别为0.19 V和0.11 V。