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通过羟基自由基氧化和分子动力学模拟对蛋白质界面足迹进行定量:应用于半乳糖凝集素-1。

Quantifying protein interface footprinting by hydroxyl radical oxidation and molecular dynamics simulation: application to galectin-1.

作者信息

Charvátová Olga, Foley B Lachele, Bern Marshall W, Sharp Joshua S, Orlando Ron, Woods Robert J

机构信息

Complex Carbohydrate Research Center, University of Georgia, Athens, Georgia 30602, USA.

出版信息

J Am Soc Mass Spectrom. 2008 Nov;19(11):1692-705. doi: 10.1016/j.jasms.2008.07.013. Epub 2008 Jul 18.

Abstract

Biomolecular surface mapping methods offer an important alternative method for characterizing protein-protein and protein-ligand interactions in cases in which it is not possible to determine high-resolution three-dimensional (3D) structures of complexes. Hydroxyl radical footprinting offers a significant advance in footprint resolution compared with traditional chemical derivatization. Here we present results of footprinting performed with hydroxyl radicals generated on the nanosecond time scale by laser-induced photodissociation of hydrogen peroxide. We applied this emerging method to a carbohydrate-binding protein, galectin-1. Since galectin-1 occurs as a homodimer, footprinting was employed to characterize the interface of the monomeric subunits. Efficient analysis of the mass spectrometry data for the oxidized protein was achieved with the recently developed ByOnic (Palo Alto, CA) software that was altered to handle the large number of modifications arising from side-chain oxidation. Quantification of the level of oxidation has been achieved by employing spectral intensities for all of the observed oxidation states on a per-residue basis. The level of accuracy achievable from spectral intensities was determined by examination of mixtures of synthetic peptides related to those present after oxidation and tryptic digestion of galectin-1. A direct relationship between side-chain solvent accessibility and level of oxidation emerged, which enabled the prediction of the level of oxidation given the 3D structure of the protein. The precision of this relationship was enhanced through the use of average solvent accessibilities computed from 10 ns molecular dynamics simulations of the protein.

摘要

生物分子表面测绘方法为在无法确定复合物高分辨率三维(3D)结构的情况下表征蛋白质-蛋白质和蛋白质-配体相互作用提供了一种重要的替代方法。与传统化学衍生化相比,羟基自由基足迹法在足迹分辨率方面有显著提高。在此,我们展示了用过氧化氢的激光诱导光解离在纳秒时间尺度上产生的羟基自由基进行足迹分析的结果。我们将这种新兴方法应用于一种碳水化合物结合蛋白——半乳糖凝集素-1。由于半乳糖凝集素-1以同二聚体形式存在,足迹分析被用于表征单体亚基的界面。使用最近开发的ByOnic(加利福尼亚州帕洛阿尔托)软件对氧化蛋白的质谱数据进行了有效分析,该软件经过修改以处理由侧链氧化产生的大量修饰。通过基于每个残基对所有观察到的氧化态使用光谱强度,实现了氧化水平的定量。通过检查与半乳糖凝集素-1氧化和胰蛋白酶消化后存在的肽相关的合成肽混合物,确定了光谱强度可达到的准确度水平。侧链溶剂可及性与氧化水平之间出现了直接关系,这使得在已知蛋白质3D结构的情况下能够预测氧化水平。通过使用从蛋白质的10纳秒分子动力学模拟计算得到的平均溶剂可及性,提高了这种关系的精度。

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