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细胞色素b5与高铁血红蛋白亚基之间形成的复合物模型。

Models for the complexes formed between cytochrome b5 and the subunits of methemoglobin.

作者信息

Poulos T L, Mauk A G

出版信息

J Biol Chem. 1983 Jun 25;258(12):7369-73.

PMID:6863249
Abstract

Computer graphics-generated models for the electron transfer complexes formed between cytochrome b5 and the subunits of methemoglobin are proposed. For both complexes, the orientation allowing optimal hydrogen bonding involves interaction between negatively charged residues on cytochrome b5 and positively charged residues on methemoglobin. In each complex, the heme groups of the interacting species are coplanar with the edges of the heme groups separated by 7-8 A and with the iron atoms 16 A apart. For the alpha-chain X cytochrome b5 complex, alpha-chain residues 56 (Lys), 60 (Lys), and 90 (Lys) interact with cytochrome b5 residues 44 (Glu), 43 (Glu), and 60 (Asp) respectively. A fourth hydrogen bond involves alpha-61 (Lys) bridging between a heme propionate from cytochrome b5 and a heme propionate from the alpha-chain. The contacts present in the beta-chain X cytochrome b5 complex involve hydrogen-bonding between beta-chain lysyl residues 59, 61, 65, and 95, and cytochrome b5 residues 48 (Glu), 44 (Glu), 43 (Glu), and 60 (Asp) respectively. An additional hydrogen bond can be formed by bridging of the epsilon-amino group of beta-66 (Lys) between a heme propionate from cytochrome b5 and a beta-chain heme propionate. In each complex, two nonionic interactions, one on each side of the heme groups, are also suggested. These interactions appear to effectively exclude external water molecules from the center of the protein-protein interaction domain. Comparison of the proposed binding loci for cytochrome b5 on the methemoglobin subunits with those proposed on cytochrome c reveals considerable structural homology between the cytochrome b5 binding sites.

摘要

本文提出了通过计算机图形生成的细胞色素b5与高铁血红蛋白亚基之间形成的电子转移复合物模型。对于这两种复合物,能实现最佳氢键作用的取向涉及细胞色素b5上带负电荷的残基与高铁血红蛋白上带正电荷的残基之间的相互作用。在每种复合物中,相互作用物种的血红素基团与被7-8埃隔开的血红素基团边缘共面,且铁原子相距16埃。对于α链X细胞色素b5复合物,α链的56位(赖氨酸)、60位(赖氨酸)和90位(赖氨酸)残基分别与细胞色素b5的44位(谷氨酸)、43位(谷氨酸)和60位(天冬氨酸)残基相互作用。第四个氢键涉及α-61(赖氨酸)在细胞色素b5的一个血红素丙酸酯与α链的一个血红素丙酸酯之间形成桥连。β链X细胞色素b5复合物中的接触涉及β链的59、61、65和95位赖氨酰残基分别与细胞色素b5的48位(谷氨酸)、44位(谷氨酸)、43位(谷氨酸)和60位(天冬氨酸)残基之间形成氢键。通过β-66(赖氨酸)的ε-氨基在细胞色素b5的一个血红素丙酸酯与β链的一个血红素丙酸酯之间形成桥连还可形成一个额外的氢键。在每种复合物中,还提出了在血红素基团两侧各有一个非离子相互作用。这些相互作用似乎有效地将外部水分子排除在蛋白质-蛋白质相互作用结构域的中心之外。将细胞色素b5在高铁血红蛋白亚基上的拟结合位点与在细胞色素c上的拟结合位点进行比较,发现细胞色素b5结合位点之间存在相当大的结构同源性。

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