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定量自上而下蛋白质组学揭示了激酶抑制剂诱导的癌细胞中蛋白质异构体水平的变化。

Quantitative Top-down Proteomics Revealed Kinase Inhibitor-Induced Proteoform-Level Changes in Cancer Cells.

作者信息

Chowdhury Trishika, Cupp-Sutton Kellye A, Guo Yanting, Gao Kevin, Zhao Zhitao, Burgett Anthony, Wu Si

机构信息

Department of Chemistry and Biochemistry, University of Alabama, Tuscaloosa, Alabama 35401, United States.

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

出版信息

J Proteome Res. 2025 Jan 3;24(1):303-314. doi: 10.1021/acs.jproteome.4c00778. Epub 2024 Dec 2.

Abstract

Quantitative analysis of proteins and their post-translational modifications (PTMs) in complex biological samples is critical to understanding cellular biology as well as disease detection and treatment. Top-down proteomics methods provide a "bird's eye" view of the proteome by directly detecting and quantifying intact proteoforms. Here, we developed a high-throughput quantitative top-down proteomics platform to probe intact proteoform and phosphoproteoform abundance changes in cells as a result of treatment with staurosporine (STS), a broad-spectrum kinase inhibitor. In total, we identified and quantified 1187 proteoforms from 215 proteoform families. Among them, 55 proteoforms from 37 proteoform families were significantly changed upon STS treatment. These proteoforms were primarily related to catabolic, metabolic, and apoptotic pathways that are expected to be impacted as a result of kinase inhibition. In addition, we manually evaluated 25 proteoform families that expressed one or more phosphorylated proteoforms. We observed that phosphorylated proteoforms in the same proteoform family, such as eukaryotic initiation factor 4E binding protein 1 (4EBP1), were differentially regulated relative to the unphosphorylated proteoforms. Combining relative profiling of proteoforms within these proteoform families with individual proteoform profiling results in a more comprehensive picture of STS treatment-induced proteoform abundance changes that cannot be achieved using bottom-up methods.

摘要

对复杂生物样品中的蛋白质及其翻译后修饰(PTM)进行定量分析,对于理解细胞生物学以及疾病检测和治疗至关重要。自上而下的蛋白质组学方法通过直接检测和定量完整的蛋白质异构体,提供了蛋白质组的“鸟瞰图”。在此,我们开发了一种高通量定量自上而下蛋白质组学平台,以探究经广谱激酶抑制剂星形孢菌素(STS)处理后细胞中完整蛋白质异构体和磷酸化蛋白质异构体丰度的变化。我们总共从215个蛋白质异构体家族中鉴定并定量了1187种蛋白质异构体。其中,37个蛋白质异构体家族中的55种蛋白质异构体在STS处理后发生了显著变化。这些蛋白质异构体主要与分解代谢、代谢和凋亡途径相关,预计这些途径会因激酶抑制而受到影响。此外,我们手动评估了25个表达一种或多种磷酸化蛋白质异构体的蛋白质异构体家族。我们观察到,同一蛋白质异构体家族中的磷酸化蛋白质异构体,如真核起始因子4E结合蛋白1(4EBP1),相对于未磷酸化的蛋白质异构体受到不同的调节。将这些蛋白质异构体家族内蛋白质异构体的相对分析与单个蛋白质异构体分析结果相结合,能更全面地呈现STS处理诱导的蛋白质异构体丰度变化情况,而这是使用自下而上的方法无法实现的。

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Multidimensional Separations in Top-Down Proteomics.自上而下蛋白质组学中的多维分离
Anal Sci Adv. 2023 Jul;4(5-6):181-203. doi: 10.1002/ansa.202300016. Epub 2023 May 29.

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