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Acetone/Isopropanol Photoinitiating System Enables Tunable Disulfide Reduction and Disulfide Mapping via Tandem Mass Spectrometry

机译:丙酮/异丙醇光引发系统可通过串联质谱实现可调节的二硫键还原和二硫键映射

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摘要

Herein, we report the development of a new photochemical system which enables rapid and tunable disulfide bond reduction and its application in disulfide mapping via online coupling with mass spectrometry (MS). Acetone, a clean and electrospray ionization (ESI) compatible solvent, is used as the photoinitiator (1% volume) in the solvent system consisting of 1:1 alkyl alcohol and water. Under ultraviolet (UV) irradiation (~254 nm), the acetone/alcohol system produces hydroxyalkyl radicals, which are responsible for disulfide bond cleavage in peptides. Acetone/isopropanol is most suitable for optimizing the disulfide reduction products, leading to almost complete conversion in less than 5 s when the reaction is conducted in a flow microreactor. The flow microreactor device not only facilitates direct coupling with ESI-MS but also allows fine-tuning of the extent of disulfide reduction by varying the UV exposure time. Near full sequence coverage for peptides consisting of intra- or interchain disulfide bonds has been achieved from complete disulfide reduction and online tandem mass spectrometry (MS/MS) via low energy collision-induced dissociation. Coupling different degrees of partial disulfide reduction with ESI-MS/MS allows disulfide mapping as demonstrated for characterizing the three disulfide bonds in insulin.
机译:在此,我们报告了一种新的光化学系统的开发,该系统能够快速且可调节地还原二硫键,并通过在线与质谱联用(MS)将其应用于二硫键作图。丙酮是一种清洁且与电喷雾电离(ESI)兼容的溶剂,在由1:1烷基醇和水组成的溶剂体系中用作光引发剂(1%体积)。在紫外线(〜254 nm)照射下,丙酮/醇系统产生羟烷基自由基,这些自由基负责肽中的二硫键裂解。丙酮/异丙醇最适合优化二硫化物还原产物,当在流动微反应器中进行反应时,可在不到5秒的时间内实现几乎完全转化。流动微反应器装置不仅有助于与ESI-MS直接偶联,而且还可以通过改变UV暴露时间来微调二硫化物的还原程度。通过完全的二硫键还原和在线串联质谱(MS / MS),已通过低能碰撞诱导的解离,实现了由链内或链间二硫键组成的肽的近全序列覆盖。 ESI-MS / MS将不同程度的部分二硫键还原反应结合在一起,即可进行二硫键谱图分析,以表征胰岛素中的三个二硫键。

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  • 期刊名称 other
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  • 年(卷),期 -1(90),21
  • 年度 -1
  • 页码 13036–13043
  • 总页数 18
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