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大鼠组织的高通量蛋白质组学和磷酸化蛋白质组学研究采用微流 Zen SWATH 技术

High-Throughput Proteomics and Phosphoproteomics of Rat Tissues Using Microflow Zeno SWATH.

机构信息

ProCan®, Children's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney, Westmead, New South Wales 2145, Australia.

Sciex, 96 Ricketts Road,Mount Waverley, Victoria 3149, Australia.

出版信息

J Proteome Res. 2024 Jul 5;23(7):2355-2366. doi: 10.1021/acs.jproteome.4c00010. Epub 2024 May 31.

Abstract

High-throughput tissue proteomics has great potential in the advancement of precision medicine. Here, we investigated the combined sensitivity of trap-elute microflow liquid chromatography with a ZenoTOF for DIA proteomics and phosphoproteomics. Method optimization was conducted on HEK293T cell lines to determine the optimal variable window size, MS2 accumulation time and gradient length. The ZenoTOF 7600 was then compared to the previous generation TripleTOF 6600 using eight rat organs, finding up to 23% more proteins using a fifth of the sample load and a third of the instrument time. Spectral reference libraries generated from Zeno SWATH data in FragPipe (MSFragger-DIA/DIA-NN) contained 4 times more fragment ions than the DIA-NN only library and quantified more proteins. Replicate single-shot phosphopeptide enrichments of 50-100 μg of rat tryptic peptide were analyzed by microflow HPLC using Zeno SWATH without fractionation. Using Spectronaut we quantified a shallow phosphoproteome containing 1000-3000 phosphoprecursors per organ. Promisingly, clear hierarchical clustering of organs was observed with high Pearson correlation coefficients >0.95 between replicate enrichments and median CV of 20%. The combined sensitivity of microflow HPLC with Zeno SWATH allows for the high-throughput quantitation of an extensive proteome and shallow phosphoproteome from small tissue samples.

摘要

高通量组织蛋白质组学在精准医学的发展中具有巨大的潜力。在这里,我们研究了与 ZenoTOF 结合的微流液相色谱的捕获洗脱(trap-elute microflow liquid chromatography)在 DIA 蛋白质组学和磷酸化蛋白质组学中的综合灵敏度。我们对 HEK293T 细胞系进行了方法优化,以确定最佳的可变窗口大小、MS2 积累时间和梯度长度。然后,我们将 ZenoTOF 7600 与上一代 TripleTOF 6600 进行了比较,使用了 8 个大鼠器官,发现使用五分之一的样品负载和三分之一的仪器时间,可鉴定出多达 23%的蛋白质。在 FragPipe 中使用 Zeno SWATH 数据生成的光谱参考文库(MSFragger-DIA/DIA-NN)包含的片段离子数量是仅使用 DIA-NN 文库的 4 倍,并且可以定量更多的蛋白质。使用 Zeno SWATH 对 50-100μg 的大鼠胰蛋白酶肽进行了单次shot 磷酸肽富集的微流 HPLC 分析,无需进行馏分收集。使用 Spectronaut ,我们定量了一个浅层磷酸蛋白质组,每个器官含有 1000-3000 个磷酸前体。有希望的是,观察到器官的清晰层次聚类,重复富集之间的 Pearson 相关系数>0.95,中位数 CV 为 20%。微流 HPLC 与 Zeno SWATH 的组合灵敏度允许从小组织样本中高通量定量广泛的蛋白质组和浅层磷酸蛋白质组。

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