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Subzero Celsius separations in three-zone temperature controlled hydrogen deuterium exchange mass spectrometry

机译:三区温度控制的氢氘交换质谱法中的零摄氏度以下分离

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摘要

Hydrogen deuterium exchange mass spectrometry (HDX MS) reports on the conformational landscape of proteins by monitoring the exchange between backbone amide hydrogen atoms and deuterium in the solvent. To maintain the label for analysis, quench conditions of low temperature and pH are required during the chromatography step performed after protease digestion but before mass spectrometry. Separation at 0 °C is often chosen as this is the temperature where the most deuterium can be recovered without freezing of the typical water and acetonitrile mobile phases. Several recent reports of separations at subzero Celsius emphasize the promise for retaining more deuterium and using a much longer chromatographic gradient or direct infusion time. Here we present the construction and validation of a modified Waters nanoACQUITY HDX manager with a third temperature-controlled zone for peptide separations at subzero temperatures. A new Peltier-cooled door replaces the door of a traditional main cooling chamber and the separations and trapping column are routed through the door housing. To prevent freezing, 35% methanol is introduced post online digestion. No new pumps are required and online digestion is performed as in the past. Subzero separations, using conventional HPLC column geometry of 3 μm particles in a 1x50mm column, did not result in major changes to chromatographic efficiency when lowering the temperature from 0 to −20 °C. There were significant increases in deuterium recovery for both model peptides and biologically relevant protein systems. Given the higher levels of deuterium recovery, expanded gradient programs can be used to allow for higher chromatographic peak capacity and therefore the analysis of larger and more complex proteins and systems.
机译:氢氘交换质谱法(HDX MS)通过监测溶剂中骨架酰胺氢原子与氘之间的交换来报告蛋白质的构象结构。为了维持标记物进行分析,在蛋白酶消化后但在质谱分析之前进行的色谱步骤中,需要低温和pH值的淬灭条件。通常选择0°C的分离温度,因为这是可以回收大多数氘而无需冻结典型水和乙腈流动相的温度。近期在零摄氏度以下进行分离的一些报道强调了保留更多氘和使用更长色谱梯度或直接注入时间的希望。在这里,我们介绍了带有第三个温度控制区的改良的Waters nanoACQUITY HDX管理器的构建和验证,该温度控制区可在零以下温度分离肽。新型珀尔帖冷却门取代了传统的主冷却室门,分离和捕集柱通过门壳体布置。为了防止冻结,在线消化后会引入35%的甲醇。不需要新的泵,并且像过去一样执行在线消化。当将温度从0降低到-20°C时,使用1 x 50mm色谱柱中3μm颗粒的常规HPLC色谱柱几何形状,零下分离不会导致色谱效率发生重大变化。模型肽和生物学相关蛋白质系统的氘回收率均显着提高。考虑到较高的氘回收水平,可以使用扩展的梯度程序获得更高的色谱峰容量,从而分析更大,更复杂的蛋白质和系统。

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