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Structures of thiolate- and carboxylate-ligated ferric H93G myoglobin: Models for cytochrome P450 and for oxyanion-bound heme proteins

机译:硫醇盐和羧酸盐连接的铁H93G肌红蛋白的结构:细胞色素P450和与氧阴离子结合的血红素蛋白的模型

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Crystal structures of the ferric H93G myoglobin (Mb) cavity mutant containing either an anionic proximal thiolate sulfur donor or a carboxylate oxygen donor ligand are reported at 1.7 and 1.4 angstrom resolution, respectively. The crystal structure and magnetic circular dichroism spectra of the H93G Mb beta-mercaptoethanol (BME) thiolate adduct reveal a high-spin, five-coordinate complex. Furthermore, the bound BME appears to have an intramolecular hydrogen bond involving the alcohol proton and the ligated thiolate sulfur, mimicking one of the three proximal N-H center dot center dot center dot S hydrogen bonds in cytochrome P450. The Fe is displaced from the porphyrin plane by 0.5 angstrom and forms a 2.41 angstrom Fe-S bond. The Fe3+-S-C angle is 111 degrees, indicative of a covalent Fe-S bond with sp(3)-hybridized sulfur. Therefore, the H93G Mb center dot BME complex provides an excellent protein-derived structural model for high-spin ferric P450. In particular, the Fe-S bond in high-spin ferric P450-CAM has essentially the same geometry despite the constraints imposed by covalent linkage of the cysteine to the protein backbone. This suggests that evolution led to the geometric optimization of the proximal Fe-S(cysteinate) bond in P450. The crystal structure and spectral properties of the H93G Mb acetate adduct reveal a high-spin, six-coordinate complex with proximal acetate and distal water axial ligands. The distal His-64 forms a hydrogen bond with the bound water. The Fe-acetate bonding geometry is inconsistent with an electron pair along the Fe-O bond as the Fe-O-C angle is 152 degrees and the Fe is far from the plane of the acetate. Thus, the Fe-O bonding is ionic. The H93G Mb cavity mutant has already been shown to be a versatile model system for the study of ligand binding to heme proteins; this investigation affords the first structural evidence that nonimidazole exogenous ligands bind in the proximal ligation site.
机译:分别以1.7和1.4埃的分辨率报道了含有阴离子型近端硫醇盐硫供体或羧酸盐氧供体配体的三价铁H93G肌红蛋白(Mb)空腔突变体的晶体结构。 H93G Mbβ-巯基乙醇(BME)硫醇盐加合物的晶体结构和磁性圆二色性光谱显示高自旋五坐标复合物。此外,结合的BME似乎具有涉及醇质子和连接的硫醇盐硫的分子内氢键,模仿了细胞色素P450中三个近端N-H中心点中心点中心点S氢键之一。 Fe从卟啉平面上移位了0.5埃,并形成了2.41埃的Fe-S键。 Fe3 + -S-C角为111度,表示与sp(3)杂化的硫共价的Fe-S键。因此,H93G Mb中心点BME复合物为高旋转三价铁P450提供了出色的蛋白质衍生结构模型。尤其是,尽管半胱氨酸与蛋白质骨架的共价键施加了约束,但高旋转三价铁P450-CAM中的Fe-S键具有基本相同的几何形状。这表明进化导致了P450中近端Fe-S(半胱氨酸)键的几何优化。 H93G Mb乙酸酯加合物的晶体结构和光谱性质显示出具有近端乙酸酯和远端水轴向配体的高纺丝六配位配合物。 His-64的远端与结合的水形成氢键。 Fe-乙酸酯键的几何形状与沿着Fe-O键的电子对不一致,因为Fe-O-C角为152度且Fe远离乙酸酯平面。因此,Fe-O键是离子键。 H93G Mb腔突变体已被证明是用于研究与血红素蛋白结合的配体的通用模型系统。这项研究提供了第一个结构证据,表明壬基咪唑外源性配体在近端结扎位点结合。

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