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Comprehensive and Reproducible Phosphopeptide Enrichment Using Iron Immobilized Metal Ion Affinity Chromatography (Fe-IMAC) Columns

机译:使用铁固定的金属离子亲和色谱(Fe-IMAC)色谱柱对磷酸肽进行全面且可重现的富集

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摘要

Advances in phosphopeptide enrichment methods enable the identification of thousands of phosphopeptides from complex samples. Current offline enrichment approaches using TiO2, Ti, and Fe immobilized metal ion affinity chromatography (IMAC) material in batch or microtip format are widely used, but they suffer from irreproducibility and compromised selectivity. To address these shortcomings, we revisited the merits of performing phosphopeptide enrichment in an HPLC column format. We found that Fe-IMAC columns enabled the selective, comprehensive, and reproducible enrichment of phosphopeptides out of complex lysates. Column enrichment did not suffer from bead-to-sample ratio issues and scaled linearly from 100 μg to 5 mg of digest. Direct measurements on an Orbitrap Velos mass spectrometer identified >7500 unique phosphopeptides with 90% selectivity and good quantitative reproducibility (median cv of 15%). The number of unique phosphopeptides could be increased to more than 14,000 when the IMAC eluate was subjected to a subsequent hydrophilic strong anion exchange separation. Fe-IMAC columns outperformed Ti-IMAC and TiO2 in batch or tip mode in terms of phosphopeptide identification and intensity. Permutation enrichments of flow-throughs showed that all materials largely bound the same phosphopeptide species, independent of physicochemical characteristics. However, binding capacity and elution efficiency did profoundly differ among the enrichment materials and formats. As a result, the often quoted orthogonality of the materials has to be called into question. Our results strongly suggest that insufficient capacity, inefficient elution, and the stochastic nature of data-dependent acquisition in mass spectrometry are the causes of the experimentally observed complementarity. The Fe-IMAC enrichment workflow using an HPLC format developed here enables rapid and comprehensive phosphoproteome analysis that can be applied to a wide range of biological systems.
机译:磷酸肽富集方法的进展使得能够从复杂样品中鉴定数千种磷酸肽。当前使用批量或微尖端形式使用TiO2,Ti和Fe固定的金属离子亲和色谱(IMAC)材料的离线富集方法已广泛使用,但它们具有不可再现性和选择性受损的问题。为了解决这些缺点,我们重新探讨了以HPLC色谱柱形式进行磷酸肽富集的优点。我们发现,Fe-IMAC色谱柱能够从复杂的裂解物中选择性,全面和可再现地富集磷酸肽。色谱柱富集没有遇到珠子与样品的比率问题,并且可以从100μg到5 mg的消化液线性缩放。在Orbitrap Velos质谱仪上进行的直接测量确定了> 7500种独特的磷酸肽,具有90%的选择性和良好的定量重现性(中值cv为15%)。当对IMAC洗脱液进行后续的亲水性强阴离子交换分离时,独特的磷酸肽的数量可以增加到14,000个以上。在磷酸肽鉴定和强度方面,Fe-IMAC色谱柱在批次或尖端模式下均优于Ti-IMAC和TiO2。流通物的置换富集表明,所有物质在很大程度上结合相同的磷酸肽物质,而与理化特性无关。但是,富集材料和形式之间的结合能力和洗脱效率确实存在很大差异。结果,必须经常质疑材料的正交性。我们的结果强烈表明,质谱中容量不足,洗脱效率低以及数据依赖型采集的随机性是实验观察到的互补性的原因。使用此处开发的HPLC格式的Fe-IMAC富集工作流程可进行快速而全面的磷酸化蛋白质组分析,该分析可应用于广泛的生物系统。

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