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Shotgun Proteomics and Biomarker Discovery

机译:gun弹枪蛋白质组学和生物标记物发现

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摘要

Coupling large-scale sequencing projects with the amino acid sequence information that can be gleaned from tandem mass spectrometry (MS/MS) has made it much easier to analyze complex mixtures of proteins. The limits of this “shotgun” approach, in which the protein mixture is proteolytically digested before separation, can be further expanded by separating the resulting mixture of peptides prior to MS/MS analysis. Both single dimensional high pressure liquid chromatography (LC) and multidimensional LC (LC/LC) can be directly interfaced with the mass spectrometer to allow for automated collection of tremendous quantities of data. While there is no single technique that addresses all proteomic challenges, the shotgun approaches, especially LC/LC-MS/MS-based techniques such as MudPIT (multidimensional protein identification technology), show advantages over gel-based techniques in speed, sensitivity, scope of analysis, and dynamic range. Advances in the ability to quantitate differences between samples and to detect for an array of post-translational modifications allow for the discovery of classes of protein biomarkers that were previously unassailable.
机译:大型测序项目与可以从串联质谱(MS / MS)中收集的氨基酸序列信息相结合,使分析复杂的蛋白质混合物变得更加容易。这种“ shot弹枪”方法的局限性是,在分离蛋白质之前先对蛋白质混合物进行蛋白水解消化,可以通过在MS / MS分析之前分离所得的肽混合物来进一步扩大蛋白质混合物的范围。一维高压液相色谱(LC)和多维LC(LC / LC)均可直接与质谱仪连接,以实现自动收集大量数据。尽管没有单一技术可以解决所有蛋白质组学难题,但the弹枪方法(尤其是基于LC / LC-MS / MS的技术,例如MudPIT(多维蛋白质鉴定技术))在速度,灵敏度,范围方面均优于基于凝胶的技术。分析和动态范围。量化样品之间差异的能力以及检测一系列翻译后修饰的能力的提高允许发现以前无法确定的蛋白质生物标记物类别。

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