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在酸性 pH 下进行 TMT 标记可克服过度标记的不利影响并提高肽鉴定率。

TMT Labeling under Acidic pH Overcomes Detrimental Overlabeling and Improves Peptide Identification Rates.

机构信息

Shanghai Institute of Precision Medicine, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200125, China.

Shanghai QuietD Biotechnology Company Limited, Shanghai 201210, China.

出版信息

Anal Chem. 2023 Jul 18;95(28):10595-10602. doi: 10.1021/acs.analchem.3c00525. Epub 2023 Jul 5.

DOI:10.1021/acs.analchem.3c00525
PMID:37403445
Abstract

Tandem mass tags (TMT) are one of the most widely used techniques in proteomics quantification due to their ability to accurately and precisely analyze up to 18 samples in a multiplexed manner. Moreover, TMT tags are introduced chemically by covalent coupling of the primary amines of digested proteins, making them universally applicable for any kind of sample. However, in addition to amine groups, the hydroxyl groups of serine, threonine, and tyrosine residues can also be labeled to some extent during TMT labeling, which compromises the analytical sensitivity and results in lower peptide identification rates compared to label-free methods. In this work, we investigated in-depth the chemical nature of TMT overlabeling and revealed that peptides simultaneously containing histidine and hydroxyl-containing residues were prone to overlabeling due to an intramolecular catalysis mediated by the histidyl imidazolyl group. Based on the understanding of the chemical mechanism, we developed a novel TMT labeling method under acidic pH that completely overcomes overlabeling. Compared to the standard labeling method provided by the TMT vendor, our method achieved comparable labeling efficiency on target groups but greatly reduced overlabeled peptides, resulting in the identification of 33.9% more unique peptides and 20.9% more proteins in proteomic analysis.

摘要

串联质量标签(TMT)是蛋白质组学定量中最广泛使用的技术之一,因为它们能够以多路复用的方式准确、精确地分析多达 18 个样本。此外,TMT 标签通过对消化蛋白质的伯胺的化学共价偶联引入,因此它们普遍适用于任何类型的样品。然而,除了胺基外,丝氨酸、苏氨酸和酪氨酸残基的羟基也可以在 TMT 标记过程中在一定程度上被标记,这会降低分析灵敏度,并导致与无标记方法相比,肽的鉴定率降低。在这项工作中,我们深入研究了 TMT 过度标记的化学性质,并揭示了同时含有组氨酸和含羟基残基的肽由于组氨酸咪唑基介导的分子内催化作用而容易过度标记。基于对化学机制的理解,我们开发了一种在酸性 pH 下的新型 TMT 标记方法,该方法完全克服了过度标记。与 TMT 供应商提供的标准标记方法相比,我们的方法在靶标基团上实现了相当的标记效率,但大大减少了过度标记的肽,从而在蛋白质组学分析中鉴定出 33.9%更多的独特肽和 20.9%更多的蛋白质。

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