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利用相干辐射研究蛋白质晶体中的缺陷与辐射损伤。

Imperfection and radiation damage in protein crystals studied with coherent radiation.

作者信息

Nave Colin, Sutton Geoff, Evans Gwyndaf, Owen Robin, Rau Christoph, Robinson Ian, Stuart David Ian

机构信息

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

Division of Structural Biology, Wellcome Trust Centre for Human Genetics, Roosevelt Drive, Oxford OX3 7BN, UK.

出版信息

J Synchrotron Radiat. 2016 Jan;23(1):228-37. doi: 10.1107/S1600577515019700. Epub 2016 Jan 1.

Abstract

Fringes and speckles occur within diffraction spots when a crystal is illuminated with coherent radiation during X-ray diffraction. The additional information in these features provides insight into the imperfections in the crystal at the sub-micrometre scale. In addition, these features can provide more accurate intensity measurements (e.g. by model-based profile fitting), detwinning (by distinguishing the various components), phasing (by exploiting sampling of the molecular transform) and refinement (by distinguishing regions with different unit-cell parameters). In order to exploit these potential benefits, the features due to coherent diffraction have to be recorded and any change due to radiation damage properly modelled. Initial results from recording coherent diffraction at cryotemperatures from polyhedrin crystals of approximately 2 µm in size are described. These measurements allowed information about the type of crystal imperfections to be obtained at the sub-micrometre level, together with the changes due to radiation damage.

摘要

当在X射线衍射过程中用相干辐射照射晶体时,衍射斑点内会出现条纹和斑点。这些特征中的附加信息能让人深入了解亚微米尺度下晶体的不完美之处。此外,这些特征可提供更精确的强度测量(例如通过基于模型的轮廓拟合)、解孪晶(通过区分不同组分)、相位确定(通过利用分子变换的采样)以及精修(通过区分具有不同晶胞参数的区域)。为了利用这些潜在益处,必须记录相干衍射产生的特征,并对辐射损伤引起的任何变化进行适当建模。本文描述了对尺寸约为2 µm的多角体蛋白晶体在低温下记录相干衍射的初步结果。这些测量能够在亚微米水平上获取有关晶体不完美类型的信息,以及辐射损伤引起的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4575/4733927/8db61cedae74/s-23-00228-fig1.jpg

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