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通过内部硫-SAD相位解析法解析得到的木瓜植物防御类barwin蛋白的高分辨率结构。

High-resolution structure of a papaya plant-defense barwin-like protein solved by in-house sulfur-SAD phasing.

作者信息

Huet Joëlle, Teinkela Mbosso Emmanuel Jean, Soror Sameh, Meyer Franck, Looze Yvan, Wintjens René, Wohlkönig Alexandre

机构信息

Laboratoire des Biopolymères et des Nanomatériaux Supramoléculaires (CP206/04), Faculté de Pharmacie, Université Libre de Bruxelles, B-1050 Brussels, Belgium.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Oct;69(Pt 10):2017-26. doi: 10.1107/S0907444913018015. Epub 2013 Sep 20.

Abstract

The first crystal structure of a barwin-like protein, named carwin, has been determined at high resolution by single-wavelength anomalous diffraction (SAD) phasing using the six intrinsic S atoms present in the protein. The barwin-like protein was purified from Carica papaya latex and crystallized in the orthorhombic space group P212121. Using in-house Cu Kα X-ray radiation, 16 cumulative diffraction data sets were acquired to increase the signal-to-noise level and thereby the anomalous scattering signal. A sequence-database search on the papaya genome identified two carwin isoforms of 122 residues in length, both containing six S atoms that yield an estimated Bijvoet ratio of 0.93% at 1.54 Å wavelength. A systematic analysis of data quality and redundancy was performed to assess the capacity to locate the S atoms and to phase the data. It was observed that the crystal decay was low during data collection and that successful S-SAD phasing could be obtained with a relatively low data multiplicity of about 7. Using a synchrotron source, high-resolution data (1 Å) were collected from two different crystal forms of the papaya latex carwin. The refined structures showed a central β-barrel of six strands surrounded by several α-helices and loops. The β-barrel of carwin appears to be a common structural module that is shared within several other unrelated proteins. Finally, the possible biological function of the protein is discussed.

摘要

一种名为carwin的类barwin蛋白的首个晶体结构,通过使用该蛋白中存在的6个内在硫原子进行单波长反常散射(SAD)定相,已在高分辨率下得以确定。该类barwin蛋白从番木瓜乳胶中纯化,并在正交空间群P212121中结晶。使用内部的铜Kα X射线辐射,采集了16个累积衍射数据集以提高信噪比,从而增强反常散射信号。对番木瓜基因组进行的序列数据库搜索鉴定出了两种长度为122个残基的carwin同工型,二者均含有6个硫原子,在1.54 Å波长下产生的估计比沃伊特比率为0.93%。对数据质量和冗余度进行了系统分析,以评估定位硫原子和对数据进行定相的能力。观察到在数据收集过程中晶体衰减较低,并且使用约7的相对较低数据多重性即可成功获得S-SAD定相。使用同步辐射源,从番木瓜乳胶carwin的两种不同晶体形式收集了高分辨率数据(1 Å)。精修后的结构显示出一个由6条链组成的中央β桶,周围环绕着几个α螺旋和环。carwin的β桶似乎是一个在其他几种不相关蛋白质中共享的常见结构模块。最后,讨论了该蛋白可能的生物学功能。

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