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Higher-energy Collision-activated Dissociation Without a Dedicated Collision Cell

机译:没有专用碰撞池的高能碰撞激活解离

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摘要

Beam-type collisional activation dissociation (HCD) offers many advantages over resonant excitation collision-activated dissociation, including improved identification of phosphorylated peptides and compatibility with isobaric tag-based quantitation (e.g. tandem mass tag (TMT) and iTRAQ). However, HCD typically requires specially designed and dedicated collision cells. Here we demonstrate that HCD can be performed in the ion injection pathway of a mass spectrometer with a standard atmospheric inlet (iHCD). Testing this method on complex peptide mixtures revealed similar identification rates to collision-activated dissociation (2883 versus 2730 IDs for iHCD/CAD, respectively) and precursor-product-conversion efficiency comparable to that achieved within a dedicated collision cell. Compared with pulsed-q dissociation, a quadrupole ion trap-based method that retains low-mass isobaric tag reporter ions, iHCD yielded isobaric tag for relative and absolute quantification reporter ions 10-fold more intense. This method involves no additional hardware and can theoretically be implemented on any mass spectrometer with an atmospheric inlet.
机译:束型碰撞活化解离(HCD)与共振激发碰撞活化解离相比具有许多优势,包括改善了磷酸化肽段的鉴定以及与基于同量异位标签的定量方法(例如串联质量标签(TMT)和iTRAQ)的相容性。但是,HCD通常需要专门设计和专用的碰撞池。在这里,我们证明了HCD可以在具有标准大气入口(iHCD)的质谱仪的离子注入路径中进行。在复杂的肽混合物上测试该方法显示出与碰撞激活解离相似的识别率(iHCD / CAD分别为2883和2730 ID),并且前体-产物转化效率与专用碰撞池中的相当。与基于四极离子阱的保留低质量等压标记报告离子的脉冲q解离方法相比,iHCD产生的等压标记的相对和绝对定量报告离子强度都高十倍。此方法不涉及其他硬件,并且理论上可以在具有大气入口的任何质谱仪上实施。

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