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串联飞秒零剂量晶体学捕获无水分的远位血红素在脱染料过氧化物酶中的位置,揭示了精氨酸在 Fe=O 形成中的催化作用。

Serial Femtosecond Zero Dose Crystallography Captures a Water-Free Distal Heme Site in a Dye-Decolorising Peroxidase to Reveal a Catalytic Role for an Arginine in Fe =O Formation.

机构信息

School of Life Sciences, University of Essex, Wivenhoe Park, Colchester, Essex, CO4 3SQ, UK.

Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0DE, UK.

出版信息

Angew Chem Int Ed Engl. 2020 Nov 23;59(48):21656-21662. doi: 10.1002/anie.202008622. Epub 2020 Sep 23.

Abstract

Obtaining structures of intact redox states of metal centers derived from zero dose X-ray crystallography can advance our mechanistic understanding of metalloenzymes. In dye-decolorising heme peroxidases (DyPs), controversy exists regarding the mechanistic role of the distal heme residues aspartate and arginine in the heterolysis of peroxide to form the catalytic intermediate compound I (Fe =O and a porphyrin cation radical). Using serial femtosecond X-ray crystallography (SFX), we have determined the pristine structures of the Fe and Fe =O redox states of a B-type DyP. These structures reveal a water-free distal heme site that, together with the presence of an asparagine, imply the use of the distal arginine as a catalytic base. A combination of mutagenesis and kinetic studies corroborate such a role. Our SFX approach thus provides unique insight into how the distal heme site of DyPs can be tuned to select aspartate or arginine for the rate enhancement of peroxide heterolysis.

摘要

从零剂量 X 射线晶体学中获得金属中心完整氧化还原态的结构,可以促进我们对金属酶的机理理解。在染料脱色血红素过氧化物酶(DyP)中,关于远端血红素残基天冬氨酸和精氨酸在过氧化物异裂形成催化中间物复合物 I(Fe = O 和卟啉阳离子自由基)中的作用机制仍存在争议。我们使用连续飞秒 X 射线晶体学(SFX)确定了 B 型 DyP 的 Fe 和 Fe = O 氧化还原态的原始结构。这些结构揭示了一个无水的远端血红素部位,再加上天冬酰胺的存在,暗示了远端精氨酸作为催化碱的作用。突变和动力学研究的结合证实了这种作用。因此,我们的 SFX 方法为 DyP 的远端血红素部位如何调节以选择天冬氨酸或精氨酸来加速过氧化物异裂提供了独特的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9910/7756461/ae01225d2edd/ANIE-59-21656-g001.jpg

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