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优化完整蛋白质水平串联质量标签标记的更高能量碰撞解离碎片化能量。

Optimization of Higher-Energy Collisional Dissociation Fragmentation Energy for Intact Protein-Level Tandem Mass Tag Labeling.

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, Norman, Oklahoma 73019, United States.

School of Meteorology, University of Oklahoma, Norman, Oklahoma 73019, United States.

出版信息

J Proteome Res. 2023 May 5;22(5):1406-1418. doi: 10.1021/acs.jproteome.2c00549. Epub 2023 Jan 5.

Abstract

Isobaric chemical tag labeling (e.g., TMT) is a commonly used approach in quantitative proteomics, and quantification is enabled through detection of low-mass reporter ions generated after MS2 fragmentation. Recently, we have introduced and optimized an intact protein-level TMT labeling platform that demonstrated >90% labeling efficiency in complex samples with top-down proteomics. Higher-energy collisional dissociation (HCD) is commonly utilized for isobaric tag-labeled peptide fragmentation because it produces accurate reporter ion intensities and avoids loss of low mass ions. HCD energies have been optimized for isobaric tag labeled-peptides but have not been systematically evaluated for isobaric tag-labeled intact proteins. In this study, we report a systematic evaluation of normalized HCD fragmentation energies (NCEs) on TMT-labeled HeLa cell lysate using top-down proteomics. Our results suggested that reporter ions often result in higher ion intensities at higher NCEs. Optimal fragmentation of intact proteins for identification, however, required relatively lower NCE. We further demonstrated that a stepped NCE scheme with energies from 30% to 50% resulted in optimal quantification and identification of TMT-labeled HeLa proteins. These parameters resulted in an average reporter ion intensity of ∼4E4 and average proteoform spectrum matches (PrSMs) of >1000 per RPLC-MS/MS run with a 1% false discovery rate (FDR) cutoff.

摘要

等压化学标签标记(例如,TMT)是定量蛋白质组学中常用的方法,通过检测 MS2 碎裂后产生的低质量报告离子来实现定量。最近,我们引入并优化了一种完整蛋白质水平的 TMT 标记平台,该平台在具有自上而下蛋白质组学的复杂样品中表现出>90%的标记效率。高能量碰撞解离(HCD)通常用于等压标签标记肽的碎裂,因为它可以产生准确的报告离子强度并避免低质量离子的损失。已经针对等压标签标记的肽优化了 HCD 能量,但尚未针对等压标签标记的完整蛋白质系统地评估 HCD 能量。在这项研究中,我们报告了使用自上而下的蛋白质组学对 HeLa 细胞裂解物进行 TMT 标记的归一化 HCD 碎裂能(NCE)的系统评估。我们的结果表明,报告离子通常在较高的 NCE 下产生更高的离子强度。然而,完整蛋白质的最佳碎裂用于鉴定需要相对较低的 NCE。我们进一步证明,采用 30%至 50%的能量的分步 NCE 方案可实现 TMT 标记的 HeLa 蛋白的最佳定量和鉴定。这些参数使报告离子的平均强度约为 4E4,平均每个 RPLC-MS/MS 运行的肽谱匹配(PrSM)超过 1000,假阳性率(FDR)截止值为 1%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a07/10164041/fd50b20b332d/nihms-1863841-f0002.jpg

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