Güray Melda Z, Zheng Shi, Doucette Alan A
Department of Chemistry, Dalhousie University , PO Box 15000, 6274 Coburg Road, Halifax, Nova Scotia B3H 4R2, Canada.
J Proteome Res. 2017 Feb 3;16(2):889-897. doi: 10.1021/acs.jproteome.6b00841. Epub 2017 Jan 26.
Protein precipitation in acetone is frequently employed ahead of mass spectrometry for sample preconcentration and purification. Unfortunately, acetone is not chemically inert; mass artifacts have previously been observed on glycine-containing peptides when exposed to acetone under acidic conditions. We herein report a distinct chemical modification occurring at the level of intact proteins when incubated in acetone. This artifact manifests as one or more satellite peaks in the MS spectrum of intact protein, spaced 98 u above the mass of the unmodified protein. Other artifacts (+84, +112 u) also appear upon incubation of proteins or peptides in acetone. The reaction is pH-sensitive, being suppressed when proteins are exposed to acetone under acidic conditions. The +98 u artifact is speculated to originate through an intermediate product of aldol condensation of acetone to form diacetone alcohol and mesityl oxide. A +98 u product could originate from nucleophilic attack on mesityl oxide or through condensation with diacetone alcohol. Given the extent of modification possible upon exposure of proteins to acetone, particularly following overnight solvent exposure or incubation at room temperature, an awareness of the variables influencing this novel modification is valued by proteomics researchers who employ acetone precipitation for protein purification.
在质谱分析之前,经常使用丙酮沉淀法对样品进行预浓缩和纯化。不幸的是,丙酮并非化学惰性物质;先前已观察到,含甘氨酸的肽在酸性条件下暴露于丙酮时会出现质量伪像。我们在此报告了蛋白质在丙酮中孵育时在完整蛋白质水平上发生的一种独特化学修饰。这种伪像在完整蛋白质的质谱图中表现为一个或多个卫星峰,比未修饰蛋白质的质量高98 u。蛋白质或肽在丙酮中孵育时也会出现其他伪像(+84、+112 u)。该反应对pH敏感,当蛋白质在酸性条件下暴露于丙酮时会受到抑制。推测+98 u的伪像是由丙酮缩合形成二丙酮醇和异亚丙基丙酮的中间产物产生的。+98 u的产物可能源于对异亚丙基丙酮的亲核攻击或与二丙酮醇的缩合。考虑到蛋白质暴露于丙酮时可能发生的修饰程度,特别是在过夜暴露于溶剂或在室温下孵育后,采用丙酮沉淀法进行蛋白质纯化的蛋白质组学研究人员需要了解影响这种新修饰的变量。