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Enhancing bottom-up and top-down proteomic measurements with ion mobility separations

机译:通过离子迁移分离增强自下而上和自上而下的蛋白质组学测量

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摘要

Proteomic measurements with greater throughput, sensitivity, and structural information are essential for improving both in-depth characterization of complex mixtures and targeted studies. While LC separation coupled with MS (LC–MS) measurements have provided information on thousands of proteins in different sample types, the introduction of a separation stage that provides further component resolution and rapid structural information has many benefits in proteomic analyses. Technical advances in ion transmission and data acquisition have made ion mobility separations an opportune technology to be easily and effectively incorporated into LC–MS proteomic measurements for enhancing their information content. Herein, we report on applications illustrating increased sensitivity, throughput, and structural information by utilizing IMS–MS and LC–IMS–MS measurements for both bottom-up and top-down proteomics measurements.
机译:具有更高通量,灵敏度和结构信息的蛋白质组学测量对于改善复杂混合物的深入表征和目标研究至关重要。尽管液相色谱分离与质谱(LC-MS)结合提供了不同样品类型中成千上万种蛋白质的信息,但引入分离级可以提供进一步的组分分离和快速的结构信息,在蛋白质组学分析中具有许多优势。离子传输和数据采集技术的进步使离子迁移率分离成为一种便捷的技术,可以轻松有效地整合到LC-MS蛋白质组学测量中以增强其信息含量。在此,我们报告了通过利用IMS-MS和LC-IMS-MS测量进行自下而上和自上而下的蛋白质组学测量来说明提高的灵敏度,通量和结构信息的应用。

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