首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development a hydrazide-functionalized thermosensitive polymer based homogeneous system for highly efficient N-glycoprotein/glycopeptide enrichment from human plasma exosome
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Development a hydrazide-functionalized thermosensitive polymer based homogeneous system for highly efficient N-glycoprotein/glycopeptide enrichment from human plasma exosome

机译:开发一种酰肼官能化热敏聚合物的均匀体系,用于高效的高效N-糖蛋白/糖肽富集的人血浆外泌体

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摘要

As one of the most common post-translational modifications, protein N-glycosylation precipitates in many important biological processes and has closely correlations with the occurrence and progression of multiple diseases. Plasma exosomes secreted by cells contain various bioactive N-glycoproteins which may serve as potential biomarkers for early disease diagnosis and treatment. However, the protein N-glycosylation profile in human plasma exosome is largely unknown, due to the technical challenges in glycoprotein identification. Signals of the rare N-glycoproteins/N-glycopeptides are severely suppressed by the abundant coexisting non-glycosylated counterparts in mass spectrometry analysis. Therefore, specific enrichment of N-glycoprotein/glycopeptide is a prerequisite for large scale N-glycosylation profiling. In this work, we developed a hydrazide functionalized thermosensitive polymer for efficient enrichment and in-depth identification of protein N-glycosylation in human plasma exosome by mass spectrometry. The polymer chains completely dissolve in the enrichment system to form a homogeneous solution. Therefore, efficient covalent coupling between the N-glycoprotein/glycopeptide and the polymer chain is achieved, due to the reduced interfacial mass transfer resistance and the densely packed accessible functional groups on the polymer chains. Furthermore, the thermosensitive polymer can be easily precipitated and recovered by simply rising the system temperature to above 34 degrees C. As a result, 329 N-glycosylation sites corresponding to 180 N-glycoproteins were enriched and identified from plasma exosomes of glioma patients and healthy subjects using the thermosensitive polymer. By quantitative comparison, we found 26 N-glycoproteins significantly changed between the glioma patients and the healthy subjects, demonstrating the potential of this new strategy for N-glycoproteome research of plasma exosome and biomarker discovery.
机译:作为最常见的翻译后修饰之一,蛋白质N-糖基化在许多重要的生物过程中沉淀出来,与多种疾病的发生和进展密切相关。细胞分泌的血浆外泌体含有各种生物活性的N-糖蛋白,其可作为早期疾病诊断和治疗的潜在生物标志物。然而,由于糖蛋白鉴定的技术挑战,人血浆外部的蛋白质N-糖基化分布在很大程度上是未知的。通过质谱分析中的丰富共存非糖基化对应物严重抑制罕见的N-糖蛋白/ N-糖肽的信号。因此,对N-糖蛋白/糖肽的比富集是大规模N-糖基化分析的先决条件。在这项工作中,我们开发了一种酰肼官能化的热敏聚合物,用于通过质谱法在人血浆外泌体中有效富集和深入鉴定蛋白质N-糖基化。聚合物链完全溶解在富集系统中以形成均匀的溶液。因此,通过降低的界面传质电阻和聚合物链上的封装可接近的官能团,实现了N-糖蛋白/糖肽和聚合物链之间的有效共价偶联。此外,通过简单地将系统温度升高至34℃,可以容易地沉淀并回收热敏聚合物。结果,富集329个对应于180个N-糖蛋白的N-糖基化位点并从胶质瘤患者的血浆外泌体和健康的血浆外泌体鉴定并鉴定。使用热敏聚合物的受试者。通过定量比较,我们发现胶质瘤患者和健康受试者之间的26个N-糖蛋白显着变化,展示了这种新血浆外科和生物标志物发现的N-糖蛋白酶研究策略的潜力。

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