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生物晶体学中的同步加速器和中子技术。

Synchrotron and neutron techniques in biological crystallography.

作者信息

Blakeley M P, Cianci M, Helliwell J R, Rizkallah P J

出版信息

Chem Soc Rev. 2004 Oct 20;33(8):548-57. doi: 10.1039/b312779f. Epub 2004 Sep 16.

Abstract

Synchrotron radiation (SR) techniques are continuously pushing the frontiers of wavelength range usage, smaller crystal sample size, larger protein molecular weight and complexity, as well as better diffraction resolution. The new research specialism of probing functional states directly in crystals, via time-resolved Laue and freeze trapping structural studies, has been developed, with a range of examples, based on research stretching over some 20 years. Overall, SR X-ray biological crystallography is complemented by neutron protein crystallographic studies aimed at cases where much more complete hydrogen details are needed involving synergistic developments between SR and neutron Laue methods. A big new potential exists in harnessing genome databases for targeting of new proteins for structural study. Structural examples in this tutorial review illustrate new chemistry learnt from biological macromolecules.

摘要

同步辐射(SR)技术不断拓展波长范围的应用边界,减小晶体样品尺寸,应对更大分子量和更高复杂性的蛋白质,同时提高衍射分辨率。通过时间分辨劳厄法和冷冻捕获结构研究直接在晶体中探测功能状态这一新的研究领域已经得到发展,基于20多年的研究有一系列实例。总体而言,SR X射线生物晶体学得到中子蛋白质晶体学研究的补充,后者针对需要更完整氢原子细节的情况,涉及SR和中子劳厄法之间的协同发展。利用基因组数据库来确定用于结构研究的新蛋白质具有巨大的新潜力。本教程综述中的结构实例展示了从生物大分子中学到的新化学知识。

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