Venkateswarlu K, Kelly D E, Kelly S L
Department of Molecular Biology and Biotechnology, The University of Sheffield, United Kingdom.
Antimicrob Agents Chemother. 1997 Apr;41(4):776-80. doi: 10.1128/AAC.41.4.776.
Saccharomyces cerevisiae CYP51, target of azole antifungal agents, and CYP51 fused with S. cerevisiae cytochrome P-450 oxidoreductase (FUS protein) were expressed in active forms in Escherichia coli by cloning into pET15b. The expression was monitored immunologically, catalytically, and by using reduced carbon monoxide difference and type II binding spectra. CYP51 and FUS enzymes were located in membranes and produced a Soret peak at 448 nm in the reduced CO difference spectrum. The cytochrome P-450 contents in the membrane fractions containing CYP51 and FUS proteins were 12.8 +/- 2.6 and 17.4 +/- 3.7 pmol/mg of protein, respectively. The NADPH cytochrome P-450 oxidoreductase (CPR) content was estimated to be 15.7 +/- 1.1 pmol/mg of protein in FUS membrane fractions. FUS protein catalyzed the demethylation of substrate at the 14alpha position, with a turnover number of 1.96 +/- 0.37 min(-1) in the presence of NADPH. No reductase activity was observed in membrane fractions containing CYP51, and therefore, CYP51 did not function catalytically in the presence of NADPH, but in the presence of an artificial electron donor, cumene hydroperoxide, activity was comparable to that of the FUS enzyme. Further support for a normal structure for the hemoproteins was obtained from type II binding spectra, in which the spectral response was saturated with an equimolar concentration of ketoconazole.
酿酒酵母CYP51(唑类抗真菌药物的作用靶点)以及与酿酒酵母细胞色素P - 450氧化还原酶融合的CYP51(FUS蛋白)通过克隆到pET15b中在大肠杆菌中以活性形式表达。通过免疫、催化以及使用还原型一氧化碳差光谱和II型结合光谱对表达进行监测。CYP51和FUS酶定位于膜中,在还原型CO差光谱中在448 nm处产生一个Soret峰。含有CYP51和FUS蛋白的膜组分中的细胞色素P - 450含量分别为12.8±2.6和17.4±3.7 pmol/mg蛋白质。在FUS膜组分中,NADPH细胞色素P - 450氧化还原酶(CPR)含量估计为15.7±1.1 pmol/mg蛋白质。FUS蛋白在14α位催化底物的去甲基化反应,在存在NADPH的情况下周转数为1.96±0.37 min⁻¹。在含有CYP51的膜组分中未观察到还原酶活性,因此,CYP51在存在NADPH时不具有催化功能,但在存在人工电子供体氢过氧化异丙苯时,其活性与FUS酶相当。从II型结合光谱获得了对血蛋白正常结构的进一步支持,其中光谱响应在等摩尔浓度的酮康唑作用下达到饱和。