首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Expression, purification and characterisation of a Bacillus subtilis ferredoxin: a potential electron transfer donor to cytochrome P450 BioI
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Expression, purification and characterisation of a Bacillus subtilis ferredoxin: a potential electron transfer donor to cytochrome P450 BioI

机译:枯草芽孢杆菌铁氧还蛋白的表达,纯化和鉴定:细胞色素P450 BioI的潜在电子转移供体

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The fer gene from Bacillus subtilis has been subcloned and overexpressed in Escherichia coli and the protein (Fer) purified to homogeneity. N-Terminal sequencing and mass spectrometry indicate that the initiator methionine is removed from the protein and that the molecular mass is 8732 Da consistent with that deduced from the gene sequence. Amino-acid sequence comparisons indicate that Fer is a ferredoxin containing a 4Fe-4S cluster. The electron paramagnetic resonance spectrum of the reduced form of Fer is typical for a [4Fe-4S](+) cluster showing rhombic signals with g values of 2.07, 1.93 and 1.88. Reduced Fer also gives rise to a magnetic circular dichroism spectrum typical of a [4Fe-4S] + cluster. Potentiometric titrations indicate that Fer has a reduction potential of -385 +/- 10 MV for the [4Fe-4S](+) -[4Fe-4S](2+) redox couple, well within the normal range expected for such a ferredoxin. A proposed physiological role for Fer is as an electron donor to cytochrome P450 BioI. Studies on Fer binding to P450 BioI give rise to a K-d value of 0.87 +/- 0.10 muM. Anaerobic experiments using CO-saturated buffer indicate that Fer is indeed capable of transferring electrons to this cytochrome P450 albeit at a fairly low rate.
机译:枯草芽孢杆菌的fer基因已被亚克隆并在大肠杆菌中过表达,蛋白质(Fer)纯化至均一。 N端测序和质谱分析表明,引发剂蛋氨酸已从蛋白质中去除,分子量为8732 Da,与从基因序列推导的一致。氨基酸序列比较表明,Fer是含有4Fe-4S簇的铁氧还蛋白。还原形式的Fer的电子顺磁共振谱对于[4Fe-4S](+)团簇是典型的,显示出g值为2.07、1.93和1.88的菱形信号。还原的铁还产生了典型的[4Fe-4S] +团簇的磁性圆二色性光谱。电位滴定表明,对于[4Fe-4S](+)-[4Fe-4S](2+)氧化还原对,Fer的还原电位为-385 +/- 10 MV,完全在此类铁氧还蛋白预期的正常范围内。提出的Fer的生理作用是作为细胞色素P450 BioI的电子供体。 Fer与P450 BioI结合的研究得出K-d值为0.87 +/- 0.10μM。使用CO饱和缓冲液进行的厌氧实验表明,尽管有相当低的速率,但Fer确实能够将电子转移至该细胞色素P450。

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