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首页> 外文期刊>Analytical chemistry >Multiple and Sequential Data Acquisition Method: An Improved Method for Fragmentation and Detection of Cross-Linked Peptides on a Hybrid Linear Trap Quadrupole Orbitrap Velos Mass Spectrometer
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Multiple and Sequential Data Acquisition Method: An Improved Method for Fragmentation and Detection of Cross-Linked Peptides on a Hybrid Linear Trap Quadrupole Orbitrap Velos Mass Spectrometer

机译:多重和顺序数据采集方法:一种改进的方法,用于在混合线性阱四极杆Orbitrap Velos质谱仪上破碎和检测交联肽

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摘要

The identification and validation of cross-linked peptides by mass spectrometry remains a daunting challenge for protein-protein cross-linking approaches when investigating protein interactions. This includes the fragmentation of cross-linked peptides in the mass spectrometer per se and following database searching, the matching of the molecular masses of the fragment ions to the correct cross-linked peptides. The hybrid linear trap quadrupole (LTQ) Orbitrap Velos combines the speed of the tandem mass spectrometry (MS/MS) duty circle with high mass accuracy, and these features were utilized in the current study to substantially improve the confidence in the identification of cross-linked peptides. An MS/MS method termed multiple and sequential data acquisition method (MSDAM) was developed. Preliminary optimization of the MS/MS settings was performed with a synthetic peptide (TP1) cross-linked with bis[sulfosuccinimidyl] suberate (BS~3). On the basis of these results, MSDAM was created and assessed on the BS~3-cross-linked bovine serum albumin (BSA) homodimer. MSDAM applies a series of multiple sequential fragmentation events with a range of different normalized collision energies (NCE) to the same precursor ion. The combination of a series of NCE enabled a considerable improvement in the quality of the fragmentation spectra for cross-linked peptides, and ultimately aided in the identification of the sequences of the cross-linked peptides. Concurrently, MSDAM provides confirmatory evidence from the formation of reporter ions fragments, which reduces the false positive rate of incorrectly assigned cross-linked peptides.
机译:当研究蛋白质相互作用时,通过质谱鉴定和验证交联肽仍然是蛋白质-蛋白质交联方法的艰巨挑战。这包括在质谱仪本身中交联肽的片段化,以及在数据库搜索之后,将片段离子的分子量与正确的交联肽相匹配。混合线性阱四极杆(LTQ)Orbitrap Velos结合了串联质谱(MS / MS)占空因数的速度和高质量精度,这些功能在当前研究中得到了充分利用,从而大大提高了对交叉鉴定的信心。连接的肽。开发了一种称为多重和顺序数据采集方法(MSDAM)的MS / MS方法。 MS / MS设置的初步优化是通过与辛二酸双[磺基琥珀酰亚胺基](BS〜3)交联的合成肽(TP1)进行的。基于这些结果,创建了MSDAM并在BS〜3交联的牛血清白蛋白(BSA)同型二聚体上进行了评估。 MSDAM将一系列具有一系列不同归一化碰撞能(NCE)的多个连续碎片事件应用于同一前体离子。一系列NCE的组合可大大改善交联肽段的碎片质谱图质量,并最终有助于鉴定交联肽段的序列。同时,MSDAM从报告离子片段的形成中提供了确证证据,从而减少了错误分配的交联肽的假阳性率。

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