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肌红蛋白中的铁-氧键和氧合血红素结构。

Fe-O2 bonding and oxyheme structure in myoglobin.

作者信息

Makinen M W, Churg A K, Glick H A

出版信息

Proc Natl Acad Sci U S A. 1978 May;75(5):2291-5. doi: 10.1073/pnas.75.5.2291.

Abstract

In the polarized electronic absorption spectrum of oxymyoglobin in single crystals, charge-transfer states involving orbitals of the iron and dioxygen ligand are defined as probes of oxyheme orbital structure and coordination geometry. The spectrum of sperm whale oxymyoglobin is diagnostic of a bent (formula: see text) oxheme coordination geometry with totally spin-paired, ground-state electronic configurations of the iron and of the dioxygen ligand. In contrast, Aplysia myoglobin is distinguishably different in oxyheme structure, indicating that the geometry of Fe-O2 bonding in heme proteins can be altered by the protein environment.

摘要

在单晶中氧合肌红蛋白的偏振电子吸收光谱中,涉及铁和双氧配体轨道的电荷转移态被定义为氧合血红素轨道结构和配位几何的探针。抹香鲸氧合肌红蛋白的光谱可诊断出弯曲的(化学式:见正文)氧合血红素配位几何结构,其中铁和双氧配体具有完全自旋配对的基态电子构型。相比之下,海兔肌红蛋白在氧合血红素结构上有明显差异,表示血红素蛋白中Fe-O₂键的几何结构可被蛋白质环境改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6809/392538/1abfb9dd0751/pnas00017-0246-a.jpg

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