Lacour T, Achstetter T, Dumas B
Biotechnology Department, Hoechst Marion Roussel, 102 route de Noisy, 93230 Romainville, France.
J Biol Chem. 1998 Sep 11;273(37):23984-92. doi: 10.1074/jbc.273.37.23984.
The mammalian electron transfer chain of mitochondrial cytochrome P450 forms involved in steroidogenesis includes very specific proteins, namely adrenodoxin reductase and adrenodoxin. Adrenodoxin reductase transfers electrons from NADPH to adrenodoxin, which subsequently donates them to the cytochrome P450 forms. The Saccharomyces cerevisiae ARH1 gene product (Arh1p) presents homology to mammalian adrenodoxin reductase. We demonstrate the capacity of recombinant Arh1p, made in Escherichia coli, to substitute for its mammalian homologue in ferricyanide, cytochrome c reduction, and, more importantly, in vitro 11beta-hydroxylase assays. Electrons could be transferred from NADPH and NADH as measured in the cytochrome c reduction assay. Apparent Km values were determined to be 0.5, 0.6, and 0.1 microM for NADPH, NADH, and bovine adrenodoxin, respectively. These values differ slightly from those of mammalian adrenodoxin reductase, except for NADH, which is a very poor electron donor to the mammalian protein. Subcellular fractionation studies have localized Arh1p to the inner membrane of yeast mitochondria. The biological function of Arh1p remains unknown, and to date, no mitochondrial cytochrome P450 has been identified. ARH1 is, however, essential for yeast viability because an ARH1 gene disruption is lethal not only in aerobic growth conditions but also, surprisingly enough, during fermentation.
参与类固醇生成的线粒体细胞色素P450形式的哺乳动物电子传递链包括非常特殊的蛋白质,即肾上腺皮质铁氧化还原蛋白还原酶和肾上腺皮质铁氧化还原蛋白。肾上腺皮质铁氧化还原蛋白还原酶将电子从NADPH转移至肾上腺皮质铁氧化还原蛋白,后者随后将电子提供给细胞色素P450形式。酿酒酵母ARH1基因产物(Arh1p)与哺乳动物肾上腺皮质铁氧化还原蛋白还原酶具有同源性。我们证明了在大肠杆菌中制备的重组Arh1p能够在铁氰化物、细胞色素c还原反应中,更重要的是在体外11β-羟化酶测定中替代其哺乳动物同源物。在细胞色素c还原测定中可测得电子能从NADPH和NADH转移。NADPH、NADH和牛肾上腺皮质铁氧化还原蛋白的表观Km值分别确定为0.5、0.6和0.1微摩尔。除了NADH外,这些值与哺乳动物肾上腺皮质铁氧化还原蛋白还原酶的值略有不同,NADH是哺乳动物蛋白非常差的电子供体。亚细胞分级分离研究已将Arh1p定位于酵母线粒体的内膜。Arh1p的生物学功能仍然未知,并且迄今为止,尚未鉴定出线粒体细胞色素P450。然而,ARH1对酵母的生存能力至关重要,因为ARH1基因破坏不仅在有氧生长条件下是致命的,而且令人惊讶的是,在发酵过程中也是致命的。