Serial crystallography captures enzyme catalysis in copper nitrite reductase at atomic resolution from one crystal

Author:

Horrell Sam,Antonyuk Svetlana V.,Eady Robert R.,Hasnain S. Samar,Hough Michael A.,Strange Richard W.

Abstract

Relating individual protein crystal structures to an enzyme mechanism remains a major and challenging goal for structural biology. Serial crystallography using multiple crystals has recently been reported in both synchrotron-radiation and X-ray free-electron laser experiments. In this work, serial crystallography was used to obtain multiple structures serially from one crystal (MSOX) to studyin crystalloenzyme catalysis. Rapid, shutterless X-ray detector technology on a synchrotron MX beamline was exploited to perform low-dose serial crystallography on a single copper nitrite reductase crystal, which survived long enough for 45 consecutive 100 K X-ray structures to be collected at 1.07–1.62 Å resolution, all sampled from the same crystal volume. This serial crystallography approach revealed the gradual conversion of the substrate bound at the catalytic type 2 Cu centre from nitrite to nitric oxide, following reduction of the type 1 Cu electron-transfer centre by X-ray-generated solvated electrons. Significant, well defined structural rearrangements in the active site are evident in the series as the enzyme moves through its catalytic cycle, namely nitrite reduction, which is a vital step in the global denitrification process. It is proposed that such a serial crystallography approach is widely applicable for studying any redox or electron-driven enzyme reactions from a single protein crystal. It can provide a `catalytic reaction movie' highlighting the structural changes that occur during enzyme catalysis. The anticipated developments in the automation of data analysis and modelling are likely to allow seamless and near-real-time analysis of such data on-site at some of the powerful synchrotron crystallographic beamlines.

Publisher

International Union of Crystallography (IUCr)

Subject

Condensed Matter Physics,General Materials Science,Biochemistry,General Chemistry

Cited by 55 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. X-Ray Absorption Spectroscopy (XAS): XANES and EXAFS;Springer Handbook of Advanced Catalyst Characterization;2023

2. Single crystal spectroscopy and multiple structures from one crystal (MSOX) define catalysis in copper nitrite reductases;Proceedings of the National Academy of Sciences;2022-07-21

3. New horizons in structure-function studies of copper nitrite reductase;Coordination Chemistry Reviews;2022-06

4. Copper‐Containing Nitrite Reductase;Encyclopedia of Inorganic and Bioinorganic Chemistry;2022-03-23

5. Structural Characterization of Multienzyme Assemblies: An Overview;Methods in Molecular Biology;2022

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