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Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase

机译:反相X反相色谱结合多孔石墨碳固定相分析原代单核细胞衍生巨噬细胞的组蛋白翻译后修饰

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摘要

A two dimensional-liquid chromatography (2D-LC) based approach was developed for the identification and quantification of histone post translational modifications in conjunction with mass spectrometry analysis. Using a bottom-up strategy, offline 2D-LC was developed using reverse phase chromatography. A porous graphitic carbon stationary phase in the first dimension and a C18 stationary phase in the second dimension interfaced with mass spectrometry was used to analyse global levels of histone post translational modifications in human primary monocyte-derived macrophages. The results demonstrated that 84 different histone peptide proteoforms, with modifications at 18 different sites including combinatorial marks were identified, representing an increase in the identification of histone peptides by 65% and 51% compared to two different 1D-LC approaches on the same mass spectrometer.The use of the porous graphitic stationary phase in the first dimension resulted in efficient separation of histone peptides across the gradient, with good resolution and is orthogonal to the online C18 reverse phase chromatography. Overall, more histone peptides were identified using the 2D-LC approach compared to conventional 1D-LC approaches. In addition, a bioinformatic pipeline was developed in-house to enable the high throughput efficient and accurate quantification of fractionated histone peptides. The automation of a section of the downstream analysis pipeline increased the throughput of the 2D-LC–MS/MS approach for the quantification of histone post translational modifications.
机译:开发了一种基于二维液相色谱(2D-LC)的方法,用于结合质谱分析鉴定和定量组蛋白翻译后修饰。使用自下而上的策略,使用反相色谱法开发了离线2D-LC。第一维的多孔石墨碳固定相和第二维的C18固定相与质谱联用,用于分析人原代单核细胞衍生巨噬细胞中组蛋白翻译后修饰的整体水平。结果表明,鉴定出84种不同的组蛋白肽蛋白体,在18个不同位点进行了修饰,包括组合标记,与同一质谱仪上两种不同的1D-LC方法相比,组蛋白肽的鉴定率分别提高了65%和51%在第一维中使用多孔石墨固定相可在梯度范围内有效分离组蛋白肽,具有良好的分离度,并且与在线C18反相色谱法正交。总体而言,与传统的1D-LC方法相比,使用2D-LC方法可鉴定出更多的组蛋白肽。此外,公司内部开发了生物信息学流水线,以实现高效的分馏组蛋白肽高效,准确定量。下游分析管线的一部分的自动化提高了2D-LC-MS / MS方法对组蛋白翻译后修饰的定量分析的通量。

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