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MS/MS Spectra Interpretation as a Statistical-Mechanics Problem

机译:MS / MS光谱解释作为统计力学问题

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We describe a new method for peptide sequencing based on the mapping of the interpretation of tandem mass spectra onto the analysis of the equilibrium distribution of a suitably defined physical model, whose variables describe the positions of the fragmentation sites along a discrete mass index. The model is governed by a potential energy function that, at present, we derive ad hoc from the distribution of peaks in a data set of experimental spectra. The statistical-physics perspective prompts for a consistent and unified approach to de novo and database-search methods, which is a distinctive feature of this approach over alternative ones: the characterization of the ground state of the model allows the de novo identification of the precursor peptide; the study of the thermodynamic variables as a function of the (fictitious) temperature gives insight on the quality of the prediction, while the probability profiles at nonzero temperature reveal, on one hand, which fragments are more reliably predicted. On the other hand, they can be used as a spectrum-adapted, a posteriori score for database search. Results obtained with two different test data sets reveal a performance similar to that of other de novo and database-search methods, which is reasonable, given the lack of an aggressive optimization of the energy function at this stage. An important feature of the method is that it is quite general and can be applied with different choices of the energy function: we discuss its possible improvements and generalizations.
机译:我们描述了一种基于串联质谱的解释映射到适当定义的物理模型的平衡分布的分析的肽测序的新方法,该物理模型的变量描述了沿着离散质量指数的断裂位点的位置。该模型由势能函数控制,目前,我们从实验光谱数据集中的峰分布中得出ad hoc。统计物理学的观点促使人们采用一致和统一的方法进行从头研究和数据库搜索,这是该方法相对于其他方法的显着特征:模型基态的特征允许从头识别前体肽对热力学变量作为(虚拟)温度的函数的研究提供了对预测质量的洞察力,而在非零温度下的概率分布图一方面揭示了更可靠地预测哪些片段。另一方面,它们可以用作适应光谱的后验分数,用于数据库搜索。使用两个不同的测试数据集获得的结果显示出与其他从头和数据库搜索方法相似的性能,这是合理的,因为在此阶段缺乏对能量函数的积极优化。该方法的一个重要特征是它非常通用,可以与能量函数的不同选择一起应用:我们讨论了它的可能的改进和概括。

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