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首页> 外文期刊>Biochemical Society Transactions >Structural and functional comparison of 2-His-1-carboxylate and 3-His metallocentres in non-haem iron(II)-dependent enzymes.
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Structural and functional comparison of 2-His-1-carboxylate and 3-His metallocentres in non-haem iron(II)-dependent enzymes.

机译:在非黑质铁(II)依赖性酶中2 HIS-1-羧酸盐和3-HIS金属中心的结构和功能比较。

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摘要

The canonical structural motif for co-ordination of non-haem ferrous iron in metal-dependent oxygenases is a facial triad of two histidine residues and one aspartate or glutamate residue. This so-called 2-His-1-carboxylate metallocentre is often accommodated in a double-stranded beta-helix fold with the iron-co-ordinating residues located in the rigid core structure of the protein. At the sequence level, the metal ligands are arranged in a HXD/E...H motif (where the distance between the conserved histidine residues is variable). Interestingly, cysteine dioxygenase, among a growing number of other iron(II) oxygenases, has the carboxylate residue replaced by another histidine. In the present review, we compare the properties of 3-His and 2-His-1-carboxylate sites based on current evidence from high-resolution crystal structures, spectroscopic characterization of the metal centres and results from mutagenesis studies. Although the overall conformation of the two metal sites is quite similar, the carboxylate residue seems to accommodate a slightly closer co-ordination distance than the counterpart histidine. The ability of the 2-His-1-carboxylate site to fit a site-directed substitution by an alternatively co-ordinating or non-co-ordinating residue with retention of metal-binding capacity and catalytic function varies among different enzymes. However, replacement by histidine disrupted the activity in the three iron(II) oxygenases examined so far.
机译:非高纤维铁在金属依赖性氧酶中协调的规范结构基序是两个组氨酸残基和一个天冬氨酸或谷氨酸残基的面部三合会。这种所谓的2-HIS-1-羧酸酯金属中心通常在双链β-螺旋折中容纳,并将铁粘的残基位于蛋白质的刚性核心结构中。在序列水平上,金属配体以HXD/E ... H序列排列(其中保守的组氨酸残基之间的距离是可变的)。有趣的是,在越来越多的其他铁(II)氧酶中,半胱氨酸二氧酶在羧酸盐残基被另一组组氨酸取代。在本综述中,我们根据高分辨率晶体结构的当前证据,金属中心的光谱表征以及诱变研究结果比较了3-HIS和2-HIS-1-羧酸盐位点的性质。尽管两个金属位点的总体构象非常相似,但羧酸盐残基似乎比对蛋白的组氨酸的协调距离稍接近。 2-HIS-1-羧酸盐位点通过替代或非串制的残基与金属结合能力保留和催化功能在不同酶之间变化的能力在不同酶之间变化。然而,组氨酸替换破坏了到目前为止检查的三(II)氧酶的活性。

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