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Reducing Mass Degeneracy in SAR by MS by Stable Isotopic Labeling

机译:通过稳定的同位素标记降低MS的SAR中的质量退化

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Mass spectrometry (MS) promises to be an invaluable tool for functional genomics, by supporting low-cost, high-throughput experiments. However, largescale MS faces the potential problem of mass degeneracy-indistinguishable masses for multiple biopolymer fragments (e.g. from a limited proteolytic digest). This paper studies the tasks of planning and interpreting MS experiments that use selective isotopic labeling, thereby substantially reducing potential mass degeneracy. Our algorithms support an experimental-computational protocol called Structure-Activity Relation by Mass Spectrometry (SAR by MS), for elucidating the function of protein-DNA and protein-protein complexes. SAR by MS enzymatically cleaves a crosslinked complex and analyzes the resulting mass spectrum for mass peaks of hypothesized fragments. Depending on binding mode, some cleavage sites will be shielded; the absence of anticipated peaks implicates corresponding fragments as either part of the interaction region or inaccessible due to conformational change upon binding. Thus different mass spectra provide evidence for different structure-activity relations. We address combinatorial and algorithmic questions in the areas of data analysis (constraining binding mode based on mass signature) and experiment planning (determining an isotopic labeling strategy to reduce mass degeneracy and aid data analysis). We explore the computational complexity of these problems, obtaining upper and lower bounds. We report experimental results from implementations of our algorithms.
机译:通过支持低成本,高通量实验,质谱(MS)承诺是功能基因组学的宝贵工具。然而,Largescale MS面向多种生物聚合物片段的质量退化 - 难以区分的质量的潜在问题(例如,来自有限的蛋白水解消解)。本文研究了使用选择性同位素标记的规划和解释MS实验的任务,从而大大降低了潜在的质量退化。我们的算法支持通过质谱(SAR通过MS)称为结构 - 活性关系的实验性计算协议,用于阐明蛋白质-DNA和蛋白质 - 蛋白质复合物的功能。 SAR通过MS酶促切换交联复合物并分析所得质谱的假设碎片的质量峰。根据绑定模式,一些裂解位点将被屏蔽;没有预期的峰值暗示相应的片段作为相互作用区域的任一部分或由于结合而变形而无法访问的碎片。因此,不同的质谱提供了不同的结构活动关系的证据。我们在数据分析领域(基于质量签名的约束力模式)和实验规划地解决了组合和算法问题(确定了同位素标记策略,以降低质量退化和辅助数据分析)。我们探讨了这些问题的计算复杂性,获取了上限和下限。我们从我们的算法的实施报告了实验结果。

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