Bastiaens P I, Bonants P J, Müller F, Visser A J
Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.
Biochemistry. 1989 Oct 17;28(21):8416-25. doi: 10.1021/bi00447a022.
Fluorescence as well as fluorescence anisotropy decay parameters have been obtained from NADPH-cytochrome P-450 reductase by time-resolved fluorescence spectroscopy. The two flavins in the enzyme, FMN and FAD, are slightly fluorescent and exhibit heterogeneous fluorescence lifetimes, as observed with other flavoproteins. The time-dependent anisotropy is also multiexponential and is wavelength-dependent. The anisotropy decay is biexponential with two correlation times when the enzyme is excited at the red edge of the first absorption band (514 nm). When the enzyme is excited in the light absorption maximum (458 nm), an additional shorter correlation time is found, which contains information about the rate of energy transfer between the two flavins present in the enzyme. FMN-depleted NADPH-cytochrome P-450 reductase shows also only two correlation times, as does the enzyme in the "air-stable" semiquinone state when excited at 458 nm. Wavelength-dependent steady-state anisotropy measurements of native and FMN-depleted protein show that the former exhibits lower values than the latter in the region of the first absorption band, but when the red edge of the absorption band is reached, the anisotropy becomes equal in both preparations. A similar situation is encountered in model compounds, monomeric and dimeric flavins, immobilized in poly(methyl methacrylate). Both in the models and in the flavoprotein this can be attributed to failure of energy transfer at the red edge of the absorption band. From the results we were able to derive both geometric parameters and dynamic properties of both flavins in the NADPH-cytochrome P-450 reductase.(ABSTRACT TRUNCATED AT 250 WORDS)
通过时间分辨荧光光谱法已从NADPH-细胞色素P-450还原酶获得了荧光以及荧光各向异性衰减参数。该酶中的两种黄素,即FMN和FAD,具有轻微的荧光性,并表现出异质的荧光寿命,这与其他黄素蛋白的情况相同。时间相关的各向异性也是多指数的且与波长有关。当酶在第一个吸收带的红边(514nm)处激发时,各向异性衰减是具有两个相关时间的双指数形式。当酶在光吸收最大值(458nm)处激发时,会发现一个额外的更短相关时间,它包含有关酶中存在的两种黄素之间能量转移速率的信息。耗尽FMN的NADPH-细胞色素P-450还原酶在458nm激发时也仅显示两个相关时间,处于“空气稳定”半醌状态的酶也是如此。天然蛋白和耗尽FMN的蛋白的波长相关稳态各向异性测量表明,在第一个吸收带区域,前者的值低于后者,但当达到吸收带的红边时,两种制剂中的各向异性变得相等。在固定于聚甲基丙烯酸甲酯中的模型化合物、单体和二聚体黄素中也遇到了类似情况。在模型和黄素蛋白中,这都可归因于在吸收带红边处能量转移的失败。从结果中我们能够推导出NADPH-细胞色素P-450还原酶中两种黄素的几何参数和动力学性质。(摘要截短至250字)