首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Crystal structures of the all-cysteinyl-coordinated D14C variant of Pyrococcus furiosus ferredoxin: [4Fe–4S] ↔ [3Fe–4S] cluster conversion
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Crystal structures of the all-cysteinyl-coordinated D14C variant of Pyrococcus furiosus ferredoxin: [4Fe–4S] ↔ [3Fe–4S] cluster conversion

机译:激烈热球菌铁氧还蛋白的全半胱氨酸配位的D14C变体的晶体结构:[4Fe-4S]↔[3Fe-4S]团簇转化

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摘要

The structure of the all-cysteinyl-coordinated D14C variant of [4Fe–4S] ferredoxin from the hyperthermophilic archaeon Pyrococcus furiosus has been determined to 1.7 Å resolution from a crystal belonging to space group C2221 with two types of molecules, A and B, in the asymmetric unit. A and B molecules have different crystal packing and intramolecular disulfide bond conformation. The crystal packing reveals a β-sheet interaction between A molecules in adjacent asymmetric units, whereas B molecules are packed as monomers in a less rigid position next to the A–A extended β-sheet dimers. The A molecules contain an intramolecular disulfide bond in a double conformation with 60% occupancy left-handed and 40% occupancy right-handed spiral conformation, whereas B molecules have an intramolecular disulfide bond in a right-handed spiral conformation. The cluster in D14C [4Fe–4S] P. furiosus ferredoxin was chemically oxidized at pH 5.8 to [3Fe–4S]. For purification at pH 8.0, two forms of the protein are obtained. Mass spectrometric analysis shows that the two forms are the D14C [3Fe–4S] P. furiosus ferredoxin monomer and a disulfide-bonded dimer of D14C [3Fe–4S] P. furiosus ferredoxin. When oxidization and purification are carried out at pH 5.8, only the monomer is obtained. The crystal structure of D14C [3Fe–4S] P. furiosus ferredoxin monomer was determined to 2.8 Å resolution from a crystal belonging to space group P212121 with two molecules in the asymmetric unit. The molecules resemble molecule A of D14C [4Fe–4S] P. furiosus ferredoxin and electron density clearly shows the presence of a [3Fe–4S] cluster.
机译:从属于嗜热球菌毕赤酵母的[4Fe–4S]铁氧还蛋白的全半胱氨酸配位的D14C变体的结构,已从属于C222 1 空间群的晶体中确定为1.7Å分辨率不对称单元中的分子A和B的数目。 A和B分子具有不同的晶体堆积和分子内二硫键构象。晶体堆积显示了相邻不对称单元中A分子之间的β-折叠相互作用,而B分子则作为单体堆积在A-A延伸的β-折叠二聚体旁边的刚性较低的位置。 A分子以双构型包含分子内二硫键,左旋占有率为60%,右旋螺旋构型为40%占有率,而B分子以右旋螺旋构型具有分子内二硫键。 D14C [4Fe–4S]恶性疟原虫铁氧还蛋白中的簇在pH 5.8下被化学氧化为[3Fe-4S]。为了在pH 8.0下纯化,获得了两种形式的蛋白质。质谱分析表明,这两种形式是D14C [3Fe-4S] P. furiosus铁氧还蛋白单体和D14C [3Fe-4S] P. furiosus铁氧还蛋白的二硫键二聚体。当在pH 5.8下进行氧化和纯化时,仅获得单体。从属于空间群P2 1 2 1 2 的晶体中确定D14C [3Fe-4S]恶性疟原虫铁氧还蛋白单体的晶体结构为2.8分辨率1 在不对称单元中有两个分子。该分子类似于D14C [4Fe–4S]恶性疟原虫铁氧还蛋白的分子A,电子密度清楚地显示了[3Fe–4S]簇的存在。

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