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辐射敏感金属蛋白的剂量分辨系列同步加速器和X射线自由电子激光结构

Dose-resolved serial synchrotron and XFEL structures of radiation-sensitive metalloproteins.

作者信息

Ebrahim Ali, Moreno-Chicano Tadeo, Appleby Martin V, Chaplin Amanda K, Beale John H, Sherrell Darren A, Duyvesteyn Helen M E, Owada Shigeki, Tono Kensuke, Sugimoto Hiroshi, Strange Richard W, Worrall Jonathan A R, Axford Danny, Owen Robin L, Hough Michael A

机构信息

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

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

出版信息

IUCrJ. 2019 May 3;6(Pt 4):543-551. doi: 10.1107/S2052252519003956. eCollection 2019 Jul 1.

Abstract

An approach is demonstrated to obtain, in a sample- and time-efficient manner, multiple dose-resolved crystal structures from room-temperature protein microcrystals using identical fixed-target supports at both synchrotrons and X-ray free-electron lasers (XFELs). This approach allows direct comparison of dose-resolved serial synchrotron and damage-free XFEL serial femtosecond crystallography structures of radiation-sensitive proteins. Specifically, serial synchrotron structures of a heme peroxidase enzyme reveal that X-ray induced changes occur at far lower doses than those at which diffraction quality is compromised (the Garman limit), consistent with previous studies on the reduction of heme proteins by low X-ray doses. In these structures, a functionally relevant bond length is shown to vary rapidly as a function of absorbed dose, with all room-temperature synchrotron structures exhibiting linear deformation of the active site compared with the XFEL structure. It is demonstrated that extrapolation of dose-dependent synchrotron structures to zero dose can closely approximate the damage-free XFEL structure. This approach is widely applicable to any protein where the crystal structure is altered by the synchrotron X-ray beam and provides a solution to the urgent requirement to determine intact structures of such proteins in a high-throughput and accessible manner.

摘要

本文展示了一种方法,可在同步加速器和X射线自由电子激光(XFEL)上,使用相同的固定靶标支架,以样本高效和时间高效的方式从室温蛋白质微晶中获得多个剂量分辨晶体结构。这种方法允许直接比较辐射敏感蛋白质的剂量分辨系列同步加速器结构和无损伤XFEL系列飞秒晶体学结构。具体而言,一种血红素过氧化物酶的系列同步加速器结构表明,X射线诱导的变化发生在远低于衍射质量受损剂量(加曼极限)的情况下,这与先前关于低X射线剂量还原血红素蛋白的研究一致。在这些结构中,一个功能相关的键长显示出随吸收剂量快速变化,与XFEL结构相比,所有室温同步加速器结构的活性位点均呈现线性变形。结果表明,将剂量依赖性同步加速器结构外推至零剂量可非常接近无损伤XFEL结构。这种方法广泛适用于任何晶体结构因同步加速器X射线束而改变的蛋白质,并为以高通量和可及方式确定此类蛋白质的完整结构这一迫切需求提供了解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6852/6608622/7850d7be299a/m-06-00543-fig1.jpg

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