基于质谱的自上而下蛋白质组学用于蛋白质冠状体的蛋白质形态分析。

IF 16 1区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Seyed Amirhossein Sadeghi, Fei Fang, Reyhane Tabatabaeian Nimavard, Qianyi Wang, Guijie Zhu, Amir Ata Saei, Liangliang Sun, Morteza Mahmoudi
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引用次数: 0

摘要

蛋白质冠是一层生物分子——主要是蛋白质——吸附在生物流体中的纳米颗粒(NP)表面。如果NP的目的是治疗,这可能对其体内的生物活性和功能产生深远的影响。蛋白质冠的形成也可以用于诊断目的,并为生物标志物的发现差异丰富蛋白质。对于所有这些应用,确定哪些蛋白质和哪些特定的蛋白质形态与不同类型的NP结合是有用的。传统的基于质谱(MS)的自下而上的蛋白质组学不能准确地识别蛋白质冠内的特定蛋白质形态。这一限制阻碍了纳米医学领域精确预测纳米药物的生物学命运和药代动力学及其在早期生物标志物发现和疾病检测中的有效性的能力,因为同一基因的许多不同蛋白质形态可能存在于冠状体中,并且它们具有不同的生物学功能。在这里,我们描述了如何使用毛细管区带电泳(CZE)-MS-based自上而下的蛋白质组学来表征蛋白质冠的蛋白质形态景观。我们的程序详细介绍了使用洗涤剂辅助的蛋白质形态洗脱从NP表面恢复完整的蛋白质形态,并使用cze -串联质谱(MS/MS)和cze -高场不对称波形离子迁移谱(FAIMS)-MS/MS测量这些蛋白质形态。整个工作流程在3-4天内完成。使用该方案,可以识别来自聚苯乙烯NPs蛋白冠的数百种蛋白质形态。从不同理化性质的NPs中观察到不同的蛋白冠蛋白形态。FAIMS的加入有利于更深入的蛋白质形态表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mass spectrometry-based top-down proteomics for proteoform profiling of protein coronas.

The protein corona is a layer of biomolecules-primarily proteins-that adsorbs to nanoparticle (NP) surfaces in biological fluids. If the purpose of the NP is therapeutic, this can have a profound effect on its biological activity and function in vivo. Protein corona formation can also be exploited for diagnostic purposes and to differentially enrich proteins for biomarker discovery. For all of these applications, it is useful to determine which proteins, and which specific proteoforms, bind to different types of NP. The traditional mass spectrometry (MS)-based bottom-up proteomics does not accurately identify specific proteoforms within the protein corona. This limitation impedes the nanomedicine field's ability to precisely predict the biological fate and pharmacokinetics of nanomedicines and their effectiveness in early-stage biomarker discovery and disease detection because many different proteoforms of the same gene could exist in the corona, and they have divergent biological functions. Here, we describe how to use capillary zone electrophoresis (CZE)-MS-based top-down proteomics to characterize the proteoform landscape of the protein corona. Our procedures detail the recovery of intact proteoforms from NP surfaces by using detergent-assisted proteoform elution and the measurement of these proteoforms by using CZE-tandem MS (MS/MS) and CZE-high-field asymmetric waveform ion mobility spectrometry (FAIMS)-MS/MS. The entire workflow is completed within 3-4 d. Using this protocol, hundreds of proteoforms from the protein corona of polystyrene NPs can be identified. Distinct protein corona proteoform profiles were observed from NPs with different physicochemical properties. The addition of FAIMS is beneficial for more in-depth proteoform characterization.

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来源期刊
Nature Protocols
Nature Protocols 生物-生化研究方法
CiteScore
29.10
自引率
0.70%
发文量
128
审稿时长
4 months
期刊介绍: Nature Protocols focuses on publishing protocols used to address significant biological and biomedical science research questions, including methods grounded in physics and chemistry with practical applications to biological problems. The journal caters to a primary audience of research scientists and, as such, exclusively publishes protocols with research applications. Protocols primarily aimed at influencing patient management and treatment decisions are not featured. The specific techniques covered encompass a wide range, including but not limited to: Biochemistry, Cell biology, Cell culture, Chemical modification, Computational biology, Developmental biology, Epigenomics, Genetic analysis, Genetic modification, Genomics, Imaging, Immunology, Isolation, purification, and separation, Lipidomics, Metabolomics, Microbiology, Model organisms, Nanotechnology, Neuroscience, Nucleic-acid-based molecular biology, Pharmacology, Plant biology, Protein analysis, Proteomics, Spectroscopy, Structural biology, Synthetic chemistry, Tissue culture, Toxicology, and Virology.
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