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Improved Protein Surface Mapping Using Diethylpyrocarbonate with MassSpectrometric Detection

机译:使用质量的焦碳酸二乙酯改善蛋白质表面图谱光谱检测

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摘要

The reliability and information content of diethylpyrocarbonate (DEPC) as a covalent probe of protein surface structure has been improved when used appropriately with mass spectrometric detection. Using myoglobin, cytochrome c, and β-2-microglobulin as model protein systems, we demonstrate for the first time that DEPC can modify Ser and Thr residues in addition to His and Tyr residues. This result expands the capability of DEPC as a structural probe because about 25% of the sequence of the average protein can now be covered using this covalent labeling reagent. In addition, we establish a new approach based on mass spectrometry to ensure the structural integrity of proteins during amino acid-specific covalent labeling reactions. This approach involves monitoring the extent of modification as a function of reagent concentration and allows any small-scale or local perturbations caused by the covalent label to be readily identified and avoided. Results indicate that these dose-response plots are much more reliable and generally applicable probes of possible protein structural changes than fluorescence or circular dichroism spectroscopies. These dose-response plots also provide a means of quantitatively comparing the reactivity of each modified residue. Based on comparisons to known X-ray crystal structures, we find that the solvent accessibility of the reactive atom in the side chain and the presence of a nearby charged residue most affect modification rates.Finally, this improved surface mapping method has been used to determine the effect ofCu(II) binding on the structure of β-2-microglobulin. Results confirm that Cu(II)binds His31, but not any of the other three His residues, and changes the solventaccessibility of residues near His31 and near the N-terminus.
机译:当适当地与质谱检测结合使用时,作为蛋白质表面结构的共价探针的焦碳酸二乙酯(DEPC)的可靠性和信息含量得到了提高。使用肌红蛋白,细胞色素c和β-2-微球蛋白作为模型蛋白质系统,我们首次证明了DEPC除His和Tyr残基外还可以修饰Ser和Thr残基。该结果扩展了DEPC作为结构探针的能力,因为现在可以使用这种共价标记试剂覆盖大约25%的平均蛋白质序列。此外,我们建立了一种基于质谱的新方法,以确保氨基酸特异性共价标记反应过程中蛋白质的结构完整性。该方法涉及监测修饰程度与试剂浓度的关系,并易于识别和避免由共价标记引起的任何小规模或局部干扰。结果表明,与荧光或圆二色性光谱学相比,这些剂量反应图更为可靠,并且是可能蛋白质结构变化的通用探针。这些剂量反应图还提供了定量比较每个修饰残基反应性的方法。基于与已知X射线晶体结构的比较,我们发现侧链中反应性原子的溶剂可及性和附近带电残基的存在对改性率的影响最大。最后,这种改进的表面映射方法已被用于确定效果。Cu(II)结合在β-2-微球蛋白的结构上。结果证实Cu(II)结合His31,但不结合其他三个His残基,并改变溶剂His31和N端附近残基的可及性。

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