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一种直接对高溶剂含量蛋白质晶体的衍射数据进行相位分析的通用方法。

A general method for directly phasing diffraction data from high-solvent-content protein crystals.

作者信息

Kingston Richard Lawrence, Millane Rick P

机构信息

School of Biological Sciences, University of Auckland, 3a Symonds St, Auckland City, Auckland 1010, New Zealand.

Computational Imaging Group, Department of Electrical and Computer Engineering, University of Canterbury, Christchurch, New Zealand.

出版信息

IUCrJ. 2022 Aug 13;9(Pt 5):648-665. doi: 10.1107/S2052252522006996. eCollection 2022 Sep 1.

Abstract

A procedure is described for direct phase determination in protein crystallography, applicable to crystals with high solvent content. The procedure requires only the diffraction data and an estimate of the solvent content as input. Direct phase determination is treated as a constraint satisfaction problem, in which an image is sought that is consistent with both the diffraction data and generic constraints on the density distribution in the crystal. The problem is solved using an iterative projection algorithm, the algorithm, which has good global convergence properties, and can locate the correct solution without any initial phase information. Computational efficiency is improved by breaking the problem down into two stages; initial approximation of the molecular envelope at low resolution, followed by subsequent phase determination using all of the data. The molecular envelope is continually updated during the phase determination step. At both stages, the algorithm is initiated with many different and random phase sets, which are evolved subject to the constraints. A clustering procedure is used to identify consistent results across multiple runs, which are then averaged to generate consensus envelopes or phase sets. The emergence of highly consistent phase sets is diagnostic of success. The effectiveness of the procedure is demonstrated by application to 42 known structures of solvent fraction 0.60-0.85. The procedure works robustly at intermediate resolutions (1.9-3.5 Å) but is strongly dependent on crystal solvent content, only working routinely with solvent fractions greater than 0.70.

摘要

本文描述了一种用于蛋白质晶体学中直接相位测定的方法,适用于高溶剂含量的晶体。该方法仅需衍射数据和溶剂含量估计值作为输入。直接相位测定被视为一个约束满足问题,即寻找一个与衍射数据以及晶体中密度分布的一般约束均相符的图像。该问题通过一种迭代投影算法来解决,此算法具有良好的全局收敛特性,且无需任何初始相位信息就能找到正确解。通过将问题分解为两个阶段来提高计算效率:首先在低分辨率下对分子包络进行初始近似,随后使用所有数据进行相位测定。在相位测定步骤中,分子包络会不断更新。在两个阶段,算法都以许多不同的随机相位集启动,并在约束条件下进行演化。使用聚类程序来识别多次运行中的一致结果,然后将这些结果平均以生成共识包络或相位集。高度一致的相位集的出现是成功的标志。通过应用于42个已知结构、溶剂分数为0.60 - 0.8�的晶体,证明了该方法的有效性。该方法在中等分辨率(1.9 - 3.5 Å)下能稳健工作,但强烈依赖于晶体溶剂含量,仅在溶剂分数大于0.70时能常规工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/905b/9438493/0a67faa30fab/m-09-00648-fig1.jpg

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