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D-氨基酸氧化酶-苯甲酸酯复合物中黄素腺嘌呤二核苷酸(FAD)的皮秒激光荧光测定法。

Picosecond laser fluorometry of FAD of D-amino acid oxidase-benzoate complex.

作者信息

Yagi K, Tanaka F, Nakashima N, Yoshihara K

出版信息

J Biol Chem. 1983 Mar 25;258(6):3799-802.

PMID:6131888
Abstract

Formation of a complex of D-amino acid oxidase (D-amino acid:O2 oxidoreductase (deaminating), EC 1.4.3.3) and benzoate, an enzyme-substrate complex model, was studied by measuring the fluorescence life-time of the coenzyme FAD of the complex by using a mode-locked Nd:YAG laser and a streak camera. The value of lifetime was 60 +/- 10 ps in the monomer of the complex and it was extremely short (much less than 5 ps) in the dimer of the complex. Since the values of fluorescence lifetime of the coenzyme are 130 ps in the monomeric form of free enzyme and 40 ps in the dimeric form of free enzyme, the decrease in the lifetime upon complex formation with benzoate is slight in the monomer (reduced to one-half) whereas marked in the dimer (reduced to less than 1/10). By analyzing the fluorescence decay curve, a dissociation constant of the monomer-dimer equilibrium of the complex was evaluated to be 0.4 +/- 0.3 microM, which is much smaller than that in free enzyme. Fluorescence analysis under steady state excitation revealed that the apparent dissociation constant (K) of FAD from the enzyme was decreased by 1:1000 upon the complex formation. Relative quantum yield of the fluorescence of FAD in the complex to that of free FAD exhibited appreciable dependence on the complex concentration: greater in the monomer and less in the dimer. These results suggest that a molecular interaction between FAD and amino acid residue(s) is strengthened by the complex formation, which contributes to a remarkable conformational change in the protein moiety of the complex.

摘要

通过使用锁模Nd:YAG激光和条纹相机测量复合物中辅酶FAD的荧光寿命,研究了D-氨基酸氧化酶(D-氨基酸:O2氧化还原酶(脱氨基),EC 1.4.3.3)与苯甲酸形成的复合物(一种酶-底物复合物模型)。复合物单体的寿命值为60±10皮秒,而复合物二聚体的寿命极短(远小于5皮秒)。由于游离酶单体形式的辅酶荧光寿命值为130皮秒,游离酶二聚体形式的辅酶荧光寿命值为40皮秒,因此与苯甲酸形成复合物时,单体的寿命下降幅度较小(降至一半),而二聚体的寿命下降幅度较大(降至不到1/10)。通过分析荧光衰减曲线,评估复合物单体-二聚体平衡的解离常数为0.4±0.3微摩尔,这比游离酶中的解离常数小得多。稳态激发下的荧光分析表明,复合物形成后,FAD与酶的表观解离常数(K)降低了1:1000。复合物中FAD荧光的相对量子产率与游离FAD荧光的相对量子产率对复合物浓度有明显的依赖性:单体中较大,二聚体中较小。这些结果表明,复合物的形成加强了FAD与氨基酸残基之间的分子相互作用,这有助于复合物蛋白质部分发生显著的构象变化。

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