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通过同源建模和扭角模拟退火进行结构测定:应用于蜡样芽孢杆菌的一种多糖脱乙酰酶

Structure determination through homology modelling and torsion-angle simulated annealing: application to a polysaccharide deacetylase from Bacillus cereus.

作者信息

Fadouloglou Vasiliki E, Kapanidou Maria, Agiomirgianaki Athanasia, Arnaouteli Sofia, Bouriotis Vassilis, Glykos Nicholas M, Kokkinidis Michael

机构信息

Department of Molecular Biology and Genetics, Democritus University of Thrace, University Campus, 68100 Alexandroupolis, Greece.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Feb;69(Pt 2):276-83. doi: 10.1107/S0907444912045829. Epub 2013 Jan 19.

Abstract

The structure of BC0361, a polysaccharide deacetylase from Bacillus cereus, has been determined using an unconventional molecular-replacement procedure. Tens of putative models of the C-terminal domain of the protein were constructed using a multitude of homology-modelling algorithms, and these were tested for the presence of signal in molecular-replacement calculations. Of these, only the model calculated by the SAM-T08 server gave a consistent and convincing solution, but the resulting model was too inaccurate to allow phase determination to proceed to completion. The application of slow-cooling torsion-angle simulated annealing (started from a very high temperature) drastically improved this initial model to the point of allowing phasing through cycles of model building and refinement to be initiated. The structure of the protein is presented with emphasis on the presence of a C(α)-modified proline at its active site, which was modelled as an α-hydroxy-L-proline.

摘要

已使用一种非常规的分子置换程序确定了蜡样芽孢杆菌多糖脱乙酰酶BC0361的结构。使用多种同源建模算法构建了该蛋白质C端结构域的数十个推测模型,并在分子置换计算中测试这些模型是否存在信号。其中,只有SAM-T08服务器计算的模型给出了一致且令人信服的解决方案,但所得模型不够准确,无法完成相位确定。应用慢速冷却扭转角模拟退火(从非常高的温度开始)极大地改进了这个初始模型,达到了可以通过模型构建和精修循环启动相位确定的程度。给出了该蛋白质的结构,重点强调了其活性位点存在一个C(α)修饰的脯氨酸,该脯氨酸被模拟为α-羟基-L-脯氨酸。

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