Hersh L B, Jorns M S
J Biol Chem. 1975 Nov 25;250(22):8728-34.
The apoprotein of hog kidney D-amino acid oxidase was reconstituted with 5-deazaflavin adenine dinucleotide (5-deazaFAD) to yield a protein which contains 1.5 mol of 5-deazaFAD/mol of enzyme. The deazaFAD-containing enzyme forms complexes with benzoate, 2-amino benzoate, and 4-aminobenzoate which are both qualitatively and quantitatively similar to those observed with native enzyme. The complex with 2-aminobenzoate exhibits a new long wavelength absorption band characteristic of a flavin charge-transfer complex. The reconstituted enzyme exhibits no activity when assayed by D-alanine oxidation. However, the bound chromophore can be reduced by alanine, phenylalanine, proline, methionine, and valine, but not by glutamate or aspartate, indicating the deazaFAD enzyme retains the substrate specificity of the native enzyme. Reduction of the enzyme by D-alanine exhibits a 1.6-fold deuterium isotope effect. Reoxidation of the reduced enzyme occurred in the presence of pyruvate plus ammonia, but not with pyruvate alone or ammonia alone. beta-Phenylpyruvate and alpha-ketobutyrate, but not alpha-ketoglutarate could replace pyruvate. Reduced enzyme isolated following reaction with [alpha-3H]alanine was found to contain 0.5 mol of tritium/mol of deazaFADH2. After denaturation of the tritium-labeled enzyme, the radioactivity was identified as deazaFADH2. Reaction of the reduced tritium-labeled enzyme with pyruvate plus ammonia prior to denaturation yields [alpha-3H]alanine and unlabeled deazaFAD. These results suggest that reduction and reoxidation of enzyme-bound deazaFAD involves the stereo-specific transfer of alpha-hydrogen from substrate to deazaFAD.
猪肾D-氨基酸氧化酶的脱辅基蛋白与5-脱氮黄素腺嘌呤二核苷酸(5-脱氮FAD)重组,得到一种每摩尔酶含有1.5摩尔5-脱氮FAD的蛋白质。含脱氮FAD的酶与苯甲酸盐、2-氨基苯甲酸盐和4-氨基苯甲酸盐形成复合物,其在定性和定量上都与天然酶所观察到的相似。与2-氨基苯甲酸盐形成的复合物表现出一种黄素电荷转移复合物特有的新的长波长吸收带。通过D-丙氨酸氧化测定时,重组酶没有活性。然而,结合的发色团可被丙氨酸、苯丙氨酸、脯氨酸、蛋氨酸和缬氨酸还原,但不能被谷氨酸或天冬氨酸还原,这表明脱氮FAD酶保留了天然酶的底物特异性。D-丙氨酸对酶的还原表现出1.6倍的氘同位素效应。还原酶在丙酮酸加氨的存在下发生再氧化,但单独的丙酮酸或单独的氨不能使其再氧化。β-苯丙酮酸和α-酮丁酸,但不是α-酮戊二酸可以替代丙酮酸。与[α-3H]丙氨酸反应后分离得到的还原酶,发现每摩尔脱氮FADH2含有0.5摩尔氚。氚标记的酶变性后,放射性被鉴定为脱氮FADH2。变性前,还原的氚标记酶与丙酮酸加氨反应,产生[α-3H]丙氨酸和未标记的脱氮FAD。这些结果表明,酶结合的脱氮FAD的还原和再氧化涉及α-氢从底物到脱氮FAD的立体特异性转移。