School of Chemistry, University of Bristol, Cantock's Close, Bristol, BS8 1TS, UK.
Department of Molecular and Cell Biology and Leicester Institute of Structural and Chemical Biology, University of Leicester, Lancaster Road, Leicester, LE1 7RH, UK.
Angew Chem Int Ed Engl. 2021 Jun 21;60(26):14578-14585. doi: 10.1002/anie.202103010. Epub 2021 May 19.
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 =O or Fe -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 =O species. For Compound II, the nature of the ferryl heme is not unambiguously established. Here, we report 1.06 Å and 1.50 Å 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 Å) is notably shorter than in APX (1.87 Å). 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.
所有血红素酶中的氧活化都需要铁形成高氧化态,通常称为亚铁血红素。有两种已知的中间产物:复合物 I 和复合物 II。亚铁血红素的性质 - 它是 Fe = O 还是 Fe - OH 物种 - 对于控制血红素酶的反应性非常重要。复合物 I 的最新证据表明,亚铁血红素是未质子化的 Fe = O 物种。对于复合物 II,亚铁血红素的性质尚未明确确定。在这里,我们使用 SACLA 的 X 射线自由电子激光收集了细胞色素 c 过氧化物酶 (CcP) 和抗坏血酸过氧化物酶 (APX) 中复合物 II 中间体的 1.06 Å 和 1.50 Å 晶体结构。这些结构揭示了两种过氧化物酶之间的差异。CcP 中的铁-氧键长(1.76 Å)明显短于 APX(1.87 Å)。结果表明,在密切相关的过氧化物酶中,复合物 I 和复合物 II 物种中的亚铁物种都经过了精细的调节。我们提出,这种微调与将质子传递到血红素的功能需求有关。