对帕金森病患者的结构蛋白质组进行全球原位分析,以确定一类新的生物标记物

IF 12.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Marie-Therese Mackmull, Luise Nagel, Fabian Sesterhenn, Jan Muntel, Jan Grossbach, Patrick Stalder, Roland Bruderer, Lukas Reiter, Wilma D. J. van de Berg, Natalie de Souza, Andreas Beyer, Paola Picotti
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引用次数: 12

摘要

帕金森病(PD)是一种常见的神经退行性疾病,需要强有力的生物标志物。由于蛋白质结构反映了功能,我们测试了对蛋白质结构变化的整体原位分析是否能深入了解帕金森病的病理生理学,并为结构性疾病生物标志物的新概念提供信息。利用有限蛋白水解质谱法(LiP-MS),我们在帕金森病患者的脑脊液(CSF)中鉴定出了76种结构改变的蛋白质。这些蛋白质富集于帕金森病的失调过程中,一些蛋白质在帕金森病脑样本中也显示出结构变化。在区分健康参与者和帕金森病患者方面,脑脊液蛋白质结构信息优于丰度信息,并提高了脑脊液中标志性帕金森病蛋白质α-突触核蛋白的区分性能。我们还首次分析了健康人结构蛋白质组的个体间变异性,确定了可变蛋白质区域的生物物理特征。尽管还需要独立的验证,但我们的数据表明,对人类结构蛋白质组的全面分析将指导新型疾病结构生物标记物的开发,并能对潜在的疾病过程提出假设。这项研究确定了帕金森病患者脑脊液中蛋白质结构相对于健康人的变化,并提出了结构性疾病生物标志物的概念。它还分析了健康人的蛋白质组结构变异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Global, in situ analysis of the structural proteome in individuals with Parkinson’s disease to identify a new class of biomarker

Global, in situ analysis of the structural proteome in individuals with Parkinson’s disease to identify a new class of biomarker
Parkinson’s disease (PD) is a prevalent neurodegenerative disease for which robust biomarkers are needed. Because protein structure reflects function, we tested whether global, in situ analysis of protein structural changes provides insight into PD pathophysiology and could inform a new concept of structural disease biomarkers. Using limited proteolysis–mass spectrometry (LiP–MS), we identified 76 structurally altered proteins in cerebrospinal fluid (CSF) of individuals with PD relative to healthy donors. These proteins were enriched in processes misregulated in PD, and some proteins also showed structural changes in PD brain samples. CSF protein structural information outperformed abundance information in discriminating between healthy participants and those with PD and improved the discriminatory performance of CSF measures of the hallmark PD protein α-synuclein. We also present the first analysis of inter-individual variability of a structural proteome in healthy individuals, identifying biophysical features of variable protein regions. Although independent validation is needed, our data suggest that global analyses of the human structural proteome will guide the development of novel structural biomarkers of disease and enable hypothesis generation about underlying disease processes. This study identifies protein structural changes in cerebrospinal fluid of people with Parkinson’s disease relative to healthy individuals and proposes the concept of structural disease biomarkers. It also analyzes proteome structural variability in healthy people.
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来源期刊
Nature Structural & Molecular Biology
Nature Structural & Molecular Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOPHYSICS
CiteScore
22.00
自引率
1.80%
发文量
160
审稿时长
3-8 weeks
期刊介绍: Nature Structural & Molecular Biology is a comprehensive platform that combines structural and molecular research. Our journal focuses on exploring the functional and mechanistic aspects of biological processes, emphasizing how molecular components collaborate to achieve a particular function. While structural data can shed light on these insights, our publication does not require them as a prerequisite.
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