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Statistical evaluation of electrospray tandem mass spectra for optimized peptide fragmentation

机译:统计分析电喷雾串联质谱优化的肽片段化

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Liquid chromatography-tandem mass spectrometry (LC-MS/MS) has become the method of choice for the analysis of complex peptide mixtures. It combines the separation power of nanoflow LC with highly specific sequence analysis, allowing automated peptide sequencing with high resolution and throughput. For peptide fragmentation, the current experimental setup uses predefined parameters based on the mass-to-charge ratio of the individual precursor. Suitable parameters are typically established by empirical evaluation of fragment spectra of individual peptides used as standards. As a result, nonoptimal fragment spectra are obtained if peptides show fragmentation behavior different from these standards, which often result in the loss of sequence-specific fragment ion information. Here we describe a statistical approach for the systematic evaluation of the quality of individual peptide fragment spectra based on the calculation of their arithmetic mean and standard deviation. The method utilizes the dependence of these parameters on the difference in electric potential across the collision cell to determine the value that results in maximum information content. We show that the method is applicable to fragment spectra generated from a variety of multiply-charged tryptic peptides, over a wide concentration range, and on different types of mass analyzers. We also show how this novel approach can be used to define optimized collision energy settings over a wide mass-to-charge range. (J Am Soc Mass Spectrom 2005,16,505-514) (c) 2005 American Society for Mass Spectrometry
机译:液相色谱-串联质谱(LC-MS / MS)已成为分析复杂肽混合物的首选方法。它结合了纳流液相色谱的分离能力和高度特异性的序列分析,可实现具有高分辨率和高通量的自动化肽测序。对于肽片段化,当前的实验设置基于各个前体的质荷比使用预定义的参数。通常通过经验评估用作标准品的各个肽段的片段光谱来确定合适的参数。结果,如果肽显示出与这些标准品不同的片段化行为,则将获得非最佳片段谱,这通常会导致序列特异性片段离子信息的丢失。在这里,我们描述了一种基于统计值的算术平均值和标准差的计算方法,用于系统评估单个肽段质谱图的质量。该方法利用这些参数对整个碰撞池的电势差的依赖性来确定导致最大信息量的值。我们表明,该方法适用于在宽浓度范围内和在不同类型的质量分析仪上,由多种带多重电荷的胰蛋白酶肽产生的碎片光谱。我们还展示了如何使用这种新颖的方法在较宽的质荷范围内定义最佳的碰撞能量设置。 (J Am Soc Mass Spectrom 2005,16,505-514)(c)2005美国质谱学会

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