首页> 外文期刊>Analytical chemistry >Fully Automated Multidimensional Reversed-Phase Liquid Chromatography with Tandem Anion/Cation Exchange Columns for Simultaneous Global Endogenous Tyrosine Nitration Detection, Integral Membrane Protein Characterization, and Quantitative Proteomics Mapping in Cerebral Infarcts
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Fully Automated Multidimensional Reversed-Phase Liquid Chromatography with Tandem Anion/Cation Exchange Columns for Simultaneous Global Endogenous Tyrosine Nitration Detection, Integral Membrane Protein Characterization, and Quantitative Proteomics Mapping in Cerebral Infarcts

机译:具有串联阴离子/阳离子交换柱的全自动多维反相液相色谱仪,用于同时进行全局内源性酪氨酸硝化检测,整体膜蛋白表征和定量蛋白质组学在脑梗死中的应用

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摘要

Protein tyrosine nitration (PTN) is a signature hallmark of radical-induced nitrative stress in a wide range of pathophysiological conditions, with naturally occurring abundances at substoichiometric levels. In this present study, a fully automated four-dimensional platform, consisting of high-/low-pH reversed-phase dimensions with two additional complementary, strong anion (SAX) and cation exchange (SCX), chromatographic separation stages inserted in tandem, was implemented for the simultaneous mapping of endogenous nitrated tyrosine-containing peptides within the global proteomic context of a Macaca fascicularis cerebral ischemic stroke model. This integrated RP-SA(C)X-RP platform was initially benchmarked through proteomic analyses of Saccharomyces cerevisiae, revealing extended proteome and protein coverage. A total of 27 144 unique peptides from 3684 nonredundant proteins [1% global false discovery rate (FDR)] were identified from M. fascicularis cerebral cortex tissue. The inclusion of the S(A/C)X columns contributed to the increased detection of acidic, hydrophilic, and hydrophobic peptide populations; these separation features enabled the concomitant identification of 127 endogenous nitrated peptides and 137 transmembrane domain-containing peptides corresponding to integral membrane proteins, without the need for specific targeted enrichment strategies. The enhanced diversity of the peptide inventory obtained from the RP SA(C)X RP platform also improved analytical confidence in isobaric tags for relative and absolute quantitation (iTRAQ)-based proteomic analyses.
机译:蛋白质酪氨酸硝化(PTN)是在广泛的病理生理条件下自由基诱导的硝化应激的标志性特征,亚化学计量水平的自然丰度很高。在本研究中,一个全自动的四维平台由高/低pH反相尺寸和两个附加的互补强阴离子(SAX)和阳离子交换(SCX)组成,串联插入了色谱分离级。为了在Macaca fascicularis脑缺血性中风模型的整体蛋白质组学背景下,同时绘制内源性硝酸化的含酪氨酸的肽进行了研究。该集成的RP-SA(C)X-RP平台最初通过对酿酒酵母的蛋白质组学分析进行基准测试,揭示了扩展的蛋白质组和蛋白质覆盖范围。从fascicularis大脑皮层组织中鉴定出了来自3684种非冗余蛋白的27 144种独特肽[1%的全球错误发现率(FDR)]。 S(A / C)X色谱柱的加入有助于增加对酸性,亲水和疏水肽种群的检测。这些分离特征使得能够同时鉴定对应于完整膜蛋白的127种内源性硝化肽和137种含跨膜结构域的肽,而无需特定的靶向富集策略。从RP SA(C)X RP平台获得的肽库的多样性提高,也提高了基于同量和绝对定量(iTRAQ)的蛋白质组学分析在同量异位标签中的分析可信度。

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