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蛋白质纳米晶体学中的连续X射线衍射场

Continuous X-ray diffractive field in protein nanocrystallography.

作者信息

Dilanian Ruben A, Streltsov Victor A, Quiney Harry M, Nugent Keith A

机构信息

ARC Centre of Excellence for Coherent X-ray Science, School of Physics, The University of Melbourne, Victoria, Australia.

出版信息

Acta Crystallogr A. 2013 Jan;69(Pt 1):108-18. doi: 10.1107/S0108767312042535. Epub 2012 Nov 16.

Abstract

The recent development of X-ray free-electron laser sources has created new opportunities for the structural analysis of protein nanocrystals. The extremely small sizes of the crystals, as well as imperfections of the crystal structure, result in an interference phenomenon in the diffraction pattern. With decreasing crystallite size the structural imperfections play a role in the formation of the diffraction pattern that is comparable in importance to the size effects and should be taken into account during the data analysis and structure reconstruction processes. There now exists a need to develop new methods of protein structure determination that do not depend on the availability of good-quality crystals and that can treat proteins under conditions close to the active form. This paper demonstrates an approach that is specifically tailored to nanocrystalline samples and offers a unique crystallographic solution.

摘要

X射线自由电子激光源的最新发展为蛋白质纳米晶体的结构分析创造了新机会。晶体尺寸极小以及晶体结构存在缺陷,导致衍射图案中出现干涉现象。随着微晶尺寸减小,结构缺陷在衍射图案形成中所起的作用在重要性上与尺寸效应相当,并且在数据分析和结构重建过程中应予以考虑。现在需要开发新的蛋白质结构测定方法,这些方法不依赖于高质量晶体的可得性,并且能够在接近活性形式的条件下处理蛋白质。本文展示了一种专门针对纳米晶体样品量身定制的方法,并提供了一种独特的晶体学解决方案。

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