首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >The structure of α-haemoglobin in complex with a haemoglobin-binding domain from Staphylococcus aureus reveals the elusive α-haemoglobin dimerization interface
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The structure of α-haemoglobin in complex with a haemoglobin-binding domain from Staphylococcus aureus reveals the elusive α-haemoglobin dimerization interface

机译:α-血红蛋白与金黄色葡萄球菌的血红蛋白结合域复合的结构揭示了难以捉摸的α-血红蛋白二聚界面

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摘要

Adult haemoglobin (Hb) is made up of two α and two β subunits. Mutations that reduce expression of the α- or β-globin genes lead to the conditions α- or β-thalassaemia, respectively. Whilst both conditions are characterized by anaemia of variable severity, other details of their pathophysiology are different, in part owing to the greater stability of the β chains that is conferred through β self-association. In contrast, α subunits interact weakly, and in the absence of stabilizing quaternary interactions the α chain (α) is prone to haem loss and denaturation. The molecular contacts that confer weak self-association of α have not been determined previously. Here, the first structure of an α2 homodimer is reported in complex with one domain of the Hb receptor from Staphylococcus aureus. The α2 dimer interface has a highly unusual, approximately linear, arrangement of four His side chains within hydrogen-bonding distance of each other. Some interactions present in the α1β1 dimer interface of native Hb are preserved in the α2 dimer. However, a marked asymmetry is observed in the α2 interface, suggesting that steric factors limit the number of stabilizing interactions that can form simultaneously across the interface.
机译:成人血红蛋白(Hb)由两个α和两个β亚基组成。降低α-或β-珠蛋白基因表达的突变分别导致条件为α-或β地中海贫血。虽然这两种疾病均以严重程度不同的贫血为特征,但其病理生理学的其他细节却有所不同,部分原因是由于通过β自缔合而产生的β链具有更高的稳定性。相反,α亚基相互作用较弱,并且在缺乏稳定的四级相互作用的情况下,α链(α)易于血红素丢失和变性。先前尚未确定赋予α弱自缔合的分子接触。在此,报道了α2同二聚体的第一结构与来自金黄色葡萄球菌的Hb受体的一个结构域复合。 α2二聚体界面在氢键键合距离之内的四个His侧链具有非常不寻常的近似线性排列。天然Hb的α1β1二聚体界面中存在的某些相互作用保留在α2二聚体中。但是,在α2界面中观察到明显的不对称性,这表明空间因素限制了可同时在整个界面上形成的稳定相互作用的数量。

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