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纳米蛋白质组学能够对人血清中的低丰度蛋白质进行肽谱解析分析。

Nanoproteomics enables proteoform-resolved analysis of low-abundance proteins in human serum.

机构信息

Department of Chemistry, University of Wisconsin-Madison, Madison, WI, 53719, USA.

Human Proteomics Program, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, WI, 53719, USA.

出版信息

Nat Commun. 2020 Aug 6;11(1):3903. doi: 10.1038/s41467-020-17643-1.

Abstract

Top-down mass spectrometry (MS)-based proteomics provides a comprehensive analysis of proteoforms to achieve a proteome-wide understanding of protein functions. However, the MS detection of low-abundance proteins from blood remains an unsolved challenge due to the extraordinary dynamic range of the blood proteome. Here, we develop an integrated nanoproteomics method coupling peptide-functionalized superparamagnetic nanoparticles (NPs) with top-down MS for the enrichment and comprehensive analysis of cardiac troponin I (cTnI), a gold-standard cardiac biomarker, directly from serum. These NPs enable the sensitive enrichment of cTnI (<1 ng/mL) with high specificity and reproducibility, while simultaneously depleting highly abundant proteins such as human serum albumin (>10 more abundant than cTnI). We demonstrate that top-down nanoproteomics can provide high-resolution proteoform-resolved molecular fingerprints of diverse cTnI proteoforms to establish proteoform-pathophysiology relationships. This scalable and reproducible antibody-free strategy can generally enable the proteoform-resolved analysis of low-abundance proteins directly from serum to reveal previously unachievable molecular details.

摘要

基于自上而下的质谱(MS)的蛋白质组学提供了对蛋白质形式的全面分析,以实现对蛋白质功能的全基因组理解。然而,由于血液蛋白质组的动态范围非常大,从血液中检测低丰度蛋白质仍然是一个未解决的挑战。在这里,我们开发了一种集成的纳米蛋白质组学方法,将肽功能化超顺磁纳米粒子(NPs)与自上而下的 MS 相结合,用于直接从血清中富集和全面分析心脏肌钙蛋白 I(cTnI),这是一种黄金标准的心脏生物标志物。这些 NPs 能够以高特异性和重现性灵敏地富集 cTnI(<1ng/mL),同时还可以耗尽高丰度的蛋白质,如人血清白蛋白(比 cTnI 高 10 倍以上)。我们证明,自上而下的纳米蛋白质组学可以提供高分辨率的 cTnI 蛋白质形式分辨的分子指纹图谱,以建立蛋白质形式与病理生理学的关系。这种可扩展且可重复的无抗体策略通常可以直接从血清中进行低丰度蛋白质的蛋白质形式分辨分析,以揭示以前无法实现的分子细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09d7/7411019/f2699a157069/41467_2020_17643_Fig1_HTML.jpg

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