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关于NADPH-细胞色素P-450还原酶以及固氮菌黄素氧还蛋白/铁氧还蛋白-NADP⁺还原酶复合物的³¹P核磁共振研究

A 31P-nuclear-magnetic-resonance study of NADPH-cytochrome-P-450 reductase and of the Azotobacter flavodoxin/ferredoxin-NADP+ reductase complex.

作者信息

Bonants P J, Müller F, Vervoort J, Edmondson D E

机构信息

Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.

出版信息

Eur J Biochem. 1990 Jul 5;190(3):531-7. doi: 10.1111/j.1432-1033.1990.tb15606.x.

Abstract

31P-nuclear-magnetic-resonance spectroscopy has been employed to probe the structure of the detergent-solubilized form of liver microsomal NADPH--cytochrome-P-450 reductase. In addition to the resonances due to the FMN and FAD coenzymes, additional phosphorus resonances are observed and are assigned to the tightly bound adenosine 2'-phosphate (2'-AMP) and to phospholipids. The phospholipid content was found to vary with the preparation; however, the 2'-AMP resonance was observed in all preparations tested. In agreement with published results [Otvos et al. (1986) Biochemistry 25, 7220-7228] for the protease-solubilized enzyme, the addition of Mn(II) to the oxidized enzyme did not result in any observable line-broadening of the FMN and FAD phosphorus resonances. The phospholipid resonances, however, were extensively broadened and the line width of the phosphorus resonance assigned to the bound 2'-AMP was broadened by approximately 70 Hz. The data show that only the phosphorus moieties of the phospholipids and the 2'-AMP, but not the flavin coenzymes are exposed to the bulk solvent. Removal of the FMN moiety from the enzyme substantially alters the 31P-NMR spectrum as compared with the native enzyme. The 2'-AMP is removed from the enzyme during the FMN-depletion procedure and the pyrophosphate resonances of the bound FAD are significantly altered. Reconstitution of the FMN-depleted protein with FMN results in the restoration of the coenzyme spectral properties. Reduction of FMN to its air-stable paramagnetic semiquinone form results in broadening of the FMN and 2'-AMP resonances in the detergent-solubilized enzyme. In agreement with previous results. FMN semiquinone formation had little or no effect on the line width of the FMN phosphorus resonance for the proteolytically solubilized enzyme. 31P-NMR experiments with Azotobacter flavodoxin semiquinone, both in its free form and in a complex with spinach ferredoxin-NADP+ reductase, mimic the differential paramagnetic effects of the flavin semiquinone on the line width of the FMN phosphorus resonance, observed by comparison of the detergent-solubilized and protease-solubilized forms of the reductase. The data demonstrate that assignment of the site of flavin semiquinone formation to a particular flavin coenzyme may not always be possible by 31P-NMR experiments in multi-flavin containing enzymes.

摘要

31P-核磁共振光谱已被用于探究去污剂增溶形式的肝脏微粒体NADPH-细胞色素P-450还原酶的结构。除了由于FMN和FAD辅酶产生的共振外,还观察到额外的磷共振,并将其归属于紧密结合的腺苷2'-磷酸(2'-AMP)和磷脂。发现磷脂含量因制备方法而异;然而,在所有测试的制剂中都观察到了2'-AMP共振。与已发表的关于蛋白酶增溶酶的结果[奥沃斯等人(1986年)《生物化学》25,7220 - 7228]一致,向氧化酶中添加Mn(II)并未导致FMN和FAD磷共振出现任何可观察到的谱线展宽。然而,磷脂共振被广泛展宽,并且归属于结合的2'-AMP的磷共振线宽增加了约70 Hz。数据表明,只有磷脂和2'-AMP的磷部分,而不是黄素辅酶暴露于大量溶剂中。与天然酶相比,从酶中去除FMN部分会显著改变31P-NMR光谱。在FMN耗尽过程中,2'-AMP从酶中被去除,并且结合的FAD的焦磷酸共振发生了显著变化。用FMN对耗尽FMN的蛋白质进行重组会导致辅酶光谱特性的恢复。将FMN还原为其空气稳定的顺磁性半醌形式会导致去污剂增溶酶中FMN和2'-AMP共振展宽。与先前的结果一致。FMN半醌的形成对蛋白水解增溶酶的FMN磷共振线宽几乎没有影响。对固氮菌黄素氧还蛋白半醌进行的31P-NMR实验,无论是其游离形式还是与菠菜铁氧还蛋白-NADP +还原酶形成的复合物,都模拟了黄素半醌对FMN磷共振线宽的不同顺磁效应,这是通过比较还原酶的去污剂增溶形式和蛋白酶增溶形式观察到的。数据表明,通过31P-NMR实验在含有多种黄素的酶中,将黄素半醌形成位点归属于特定的黄素辅酶可能并不总是可行的。

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