Shanghai Institute of Precision Medicine, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200125, China.
Shanghai Institute of Precision Medicine, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200125, China.
Anal Chim Acta. 2024 May 22;1304:342538. doi: 10.1016/j.aca.2024.342538. Epub 2024 Apr 4.
With the advent of proline-based reporter isobaric Tandem Mass Tag (TMTpro) reagents, the sample multiplexing capacity of tandem mass tags (TMTs) has been expanded, and up to 18 samples can be quantified in a multiplexed manner. Like classic TMT reagents, TMTpro reagents contain a tertiary amine group, which markedly enhances their reactivity toward hydroxyl groups and results in O-acylation of serine, threonine and tyrosine residues. This overlabeling significantly compromises proteome analysis in terms of depth and precision. In particular, the reactivity of hydroxyl-containing residues can be dramatically enhanced when coexisting with a histidine in the same peptides, leading to a severe systematic bias against the analysis of these peptides. Although some protocols using a reduced molar excess of TMT under alkaline conditions can alleviate overlabeling of histidine-free peptides to some extent, they have a limited effect on histidyl- and hydroxyl-containing peptides.
Here, we report a novel TMTpro labeling method that overcomes detrimental overlabeling while providing high labeling efficiency of amines. Additionally, our method is cost-effective, as it requires only half the amount of TMTpro reagents recommended by the reagent manufacturer. In a deep-scale analysis of a yeast/human two-proteome model sample, we compared our method with a typical alkaline labeling method using a reduced molar excess of TMTpro. Even at a depth of over 10,000 proteins, our method detected 23.7% more unique peptides and 8.7% more protein groups compared to the alkaline labeling method. Moreover, our method significantly improved the quantitative precision due to the reduced variability in labeling and increased protein sequence coverage. This substantially enhanced the statistical power of our method for detecting differentially abundant proteins, providing an average of 13% more yeast proteins that reached statistical significance.
We presented a novel TMTpro labeling method that overcomes the detrimental O-acylation and thus significantly improves the depth and quantitative precision for proteome analysis.
随着脯氨酸基报告同位素标记相对和绝对定量(TMTpro)试剂的出现,串联质量标签(TMTs)的样品多重化能力得到了扩展,多达 18 个样品可以以多重化的方式进行定量。与经典的 TMT 试剂一样,TMTpro 试剂含有叔胺基团,这显著增强了它们对羟基的反应性,并导致丝氨酸、苏氨酸和酪氨酸残基的 O-酰化。这种过度标记极大地影响了蛋白质组分析的深度和精度。特别是,当同一肽中的羟基残基与组氨酸共存时,羟基残基的反应性可以显著增强,导致这些肽的分析存在严重的系统偏差。尽管一些使用碱性条件下 TMT 摩尔过量减少的方案在一定程度上可以减轻无组氨酸肽的过度标记,但它们对组氨酸和羟基肽的影响有限。
在这里,我们报告了一种新的 TMTpro 标记方法,该方法克服了有害的过度标记,同时提供了高的胺标记效率。此外,我们的方法具有成本效益,因为它只需要试剂制造商推荐的 TMTpro 试剂用量的一半。在对酵母/人双蛋白质组模型样品进行深度分析时,我们将我们的方法与使用 TMTpro 摩尔过量减少的典型碱性标记方法进行了比较。即使在超过 10000 个蛋白质的深度下,与碱性标记方法相比,我们的方法检测到的独特肽增加了 23.7%,蛋白质组增加了 8.7%。此外,由于标记的变异性降低和蛋白质序列覆盖度增加,我们的方法显著提高了定量精度。这极大地提高了我们的方法检测差异丰度蛋白的统计能力,提供了平均 13%更多达到统计显著性的酵母蛋白。
我们提出了一种新的 TMTpro 标记方法,该方法克服了有害的 O-酰化,从而显著提高了蛋白质组分析的深度和定量精度。