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首页> 外文期刊>Angewandte Chemie >XFEL Crystal Structures of Peroxidase Compound II
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XFEL Crystal Structures of Peroxidase Compound II

机译:过氧化物酶化合物II的XFEL晶体结构

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Oxygen activation in all heme enzymes requires the formation of high oxidation states of iron, usually referred to as ferryl heme. There are two known intermediates: Compound I and Compound II. The nature of the ferryl heme-and whether it is an Fe-IV=O or Fe-IV-OH species-is important for controlling reactivity across groups of heme enzymes. The most recent evidence for Compound I indicates that the ferryl heme is an unprotonated Fe-IV=O species. For Compound II, the nature of the ferryl heme is not unambiguously established. Here, we report 1.06 angstrom and 1.50 angstrom crystal structures for Compound II intermediates in cytochrome c peroxidase (CcP) and ascorbate peroxidase (APX), collected using the X-ray free electron laser at SACLA. The structures reveal differences between the two peroxidases. The iron-oxygen bond length in CcP (1.76 angstrom) is notably shorter than in APX (1.87 angstrom). The results indicate that the ferryl species is finely tuned across Compound I and Compound II species in closely related peroxidase enzymes. We propose that this fine-tuning is linked to the functional need for proton delivery to the heme.
机译:所有血红素酶中的氧活化都需要形成铁的高氧化状态,通常称为铁酰血红素。有两种已知的中间体:化合物I和化合物II。铁酰血红素的性质以及它是Fe IV=O还是Fe IV OH物种对于控制血红素酶组的反应性很重要。化合物I的最新证据表明,铁酰血红素是一种未经修饰的Fe IV=O物种。对于化合物II,铁酰血红素的性质尚未明确确定。在这里,我们报告了使用X射线自由电子激光在SACLA收集的细胞色素c过氧化物酶(CcP)和抗坏血酸过氧化物酶(APX)中的化合物II中间体的1.06埃和1.50埃晶体结构。结构揭示了这两种过氧化物酶之间的差异。CcP(1.76埃)中的铁氧键长度明显短于APX(1.87埃)。结果表明,在密切相关的过氧化物酶中,铁酰物种在化合物I和化合物II物种之间进行了微调。我们认为这种微调与质子传递到血红素的功能需求有关。

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