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Solution Additives that Desalt Protein Ions in Native Mass Spectrometry

机译:液添加剂在本土质谱法脱盐蛋白离子

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摘要

The presence of many salts, such as sodium chloride, can adversely affect the performance of native electrospray ionization mass spectrometry for the analysis of proteins and protein complexes by reducing the overall molecular ion abundances and distributing signal for any given charge state into many cationized forms with various numbers of adducts attached. Several solution additives, such as ammonium bromide, ammonium iodide, and NaSbF6, can significantly lower the extent of sodium ion adduction to the molecular ions of proteins and protein complexes. For ubiquitin, addition of 25 mM ammonium bromide or ammonium iodide into aqueous solutions also containing 1.0 mM NaCl results in a factor of 72 and 56 increase, respectively, in the relative abundances of the fully protonated molecular ions compared to when these additives are not present. The effectiveness of this method for reducing sodium ion adduction is related to the low proton affinity (PA) values of the anions. Anions with very low PA also have a propensity to adduct as an acid molecule, but these adducts can be readily dissociated from the molecular ions either by activation in the source or subsequently by collisional activation in the mass spectrometer. This method of reducing sodium ion adduction to proteins is simple and requires no experimental modifications, making it an attractive alternative to other methods for desalting proteins prior to mass spectrometry analysis.
机译:许多盐(例如氯化钠)的存在会降低整体分子离子丰度并将任何给定电荷态的信号分配为许多阳离子化形式,从而不利地影响天然电喷雾电离质谱分析蛋白质和蛋白质复合物的性能。各种数量的加合物。几种溶液添加剂,例如溴化铵,碘化铵和NaSbF6,可以显着降低钠离子与蛋白质和蛋白质复合物分子离子的加成程度。对于泛素,与不存在这些添加剂的情况相比,在还含有1.0 mM NaCl的水溶液中添加25 mM溴化铵或碘化铵会分别导致完全质子化分子离子的相对丰度分别增加72和56倍。 。该方法减少钠离子加合的有效性与阴离子的低质子亲和力(PA)值有关。具有非常低的PA的阴离子也具有作为酸分子加成的倾向,但是这些加成物可以通过源中的活化或随后通过质谱仪中的碰撞活化而容易地与分子离子解离。这种减少钠离子与蛋白质结合的方法非常简单,不需要进行任何实验修饰,使其成为质谱分析之前将蛋白质脱盐的其他方法的有吸引力的替代方法。

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