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The speciation of the proteome

机译:蛋白质组学的形成

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Introduction In proteomics a paradox situation developed in the last years. At one side it is basic knowledge that proteins are post-translationally modified and occur in different isoforms. At the other side the protein expression concept disclaims post-translational modifications by connecting protein names directly with function. Discussion Optimal proteome coverage is today reached by bottom-up liquid chromatography/mass spectrometry. But quantification at the peptide level in shotgun or bottom-up approaches by liquid chromatography and mass spectrometry is completely ignoring that a special peptide may exist in an unmodified form and in several-fold modified forms. The acceptance of the protein species concept is a basic prerequisite for meaningful quantitative analyses in functional proteomics. In discovery approaches only top-down analyses, separating the protein species before digestion, identification and quantification by two-dimensional gel electrophoresis or protein liquid chromatography, allow the correlation between changes of a biological situation and function. Conclusion To obtain biological relevant information kinetics and systems biology have to be performed at the protein species level, which is the major challenge in proteomics today.
机译:引言在蛋白质组学中,近年来出现了一个自相矛盾的情况。在一方面,基础知识是蛋白质被翻译后修饰并且以不同的同工型出现。另一方面,蛋白质表达概念通过直接将蛋白质名称与功能联系起来,否认了翻译后修饰。讨论今天,通过自下而上的液相色谱/质谱法可以达到最佳的蛋白质组覆盖率。但是在shot弹枪或自下而上的方法中,通过液相色谱和质谱在肽水平上进行定量分析完全忽略了特殊肽可能以未修饰形式和数倍修饰形式存在。接受蛋白质种类的概念是功能蛋白质组学中有意义的定量分析的基本前提。在发现方法中,只有通过自上而下的分析,即通过二维凝胶电泳或蛋白质液相色谱法在消化,鉴定和定量之前分离蛋白质种类,才能实现生物学状况和功能变化之间的相关性。结论要获得生物学相关的信息,动力学和系统生物学必须在蛋白质种类水平上进行,这是当今蛋白质组学的主要挑战。

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