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Infrared Multiphoton Dissociation for Quantitative Shotgun Proteomics

机译:红外多光子解离用于定量Shot弹枪蛋白质组学。

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We modified a dual-cell linear ion trap mass spectrometer to perform infrared multiphoton dissociation (IRMPD) in the low-pressure trap of a dual-cell quadrupole linear ion trap (dual-cell QLT) and perform large-scale IRMPD analyses of complex peptide mixtures. Upon optimization of activation parameters (precursor q-value, irradiation time, and photon flux), IRMPD subtly, but significantly, outperforms resonant-excitation collisional-activated dissociation (CAD) for peptides identified at a 1percent false-discovery rate (FDR) from a yeast tryptic digest (95percent confidence, p velence 0.019). We further demonstrate that IRMPD is compatible with the analysis of isobaric-tagged peptides. Using fixed QLT rf amplitude allows for the consistent retention of reporter ions, but necessitates the use of variable IRMPD irradiation times, dependent upon precursor mass to charge (m/z). We show that IRMPD activation parameters can be tuned to allow for effective peptide identification and quantitation simultaneously. We thus conclude that IRMPD performed in a dual-cell ion trap is an effective option for the large-scale analysis of both unmodified and isobaric-tagged peptides.
机译:我们对双池线性离子阱质谱仪进行了改进,以在双池四极线性离子阱(双池QLT)的低压阱中进行红外多光子离解(IRMPD),并对复杂肽段进行了大规模IRMPD分析混合物。在优化激活参数(前体q值,照射时间和光子通量)后,IRMPD可以巧妙但显着地胜过以1%的错误发现率(FDR)鉴定的肽的共振激发碰撞活化解离(CAD)酵母胰蛋白酶消化物(95%置信度,平均0.019)。我们进一步证明IRMPD与同量异位标记的肽的分析兼容。使用固定的QLT rf振幅可以始终如一地保留报告离子,但必须根据前体荷电质量(m / z)使用可变的IRMPD辐照时间。我们表明,IRMPD激活参数可以进行调整,以允许有效的多肽鉴定和定量同时进行。因此,我们得出结论,在双细胞离子阱中进行的IRMPD是大规模分析未修饰和等压标记的肽的有效选择。

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