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Infrared Multiphoton Dissociation for Quantitative Shotgun Proteomics

机译:红外多光子解离定量蛋白质组学猎枪

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摘要

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 CAD for peptides identified at a 1% false-discovery rate (FDR) from a yeast tryptic digest (95% confidence, p = 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:我们修饰了双细胞线性离子阱质谱仪,在双细胞四极线性离子阱(双细胞QLT)的低压捕集中进行红外多光子解离(IRMPD),并进行大规模的肽混合物的IRMPD分析。在优化激活参数(前体Q值,辐射时间和光子通量)时,巧妙地,但显着优于由酵母胰蛋白酶消化(95%)以1%的假冒速率(FDR)鉴定的肽的共振激发CAD(95%)信心,p = 0.019)。我们进一步证明IRMPD与ISobaric标记肽的分析相容。使用固定QLT射率振幅允许报道离子的一致保留,但需要使用可变IRMPD照射时间,取决于前体质量 - 电荷(M / Z)。我们表明可以调整IRMPD激活参数以允许同时进行有效的肽识别和定量。因此,得出结论,在双细胞离子疏水膜中进行的IRMPD是对未改性和异因标记肽的大规模分析的有效选择。

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