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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Top-down mass spectrometry of hybrid materials with hydrophobic peptide and hydrophilic or hydrophobic polymer blocks
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Top-down mass spectrometry of hybrid materials with hydrophobic peptide and hydrophilic or hydrophobic polymer blocks

机译:具有疏水肽和亲水或疏水聚合物嵌段的杂化材料的自上而下质谱

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摘要

A multidimensional mass spectrometry (MS) methodology is introduced for the molecular level characterization of polymer-peptide (or polymer-protein) copolymers that cannot be crystallized or chromatographically purified. It encompasses electrospray ionization (ESI) or matrix-assisted laser desorption ionization (MALDI) coupled with mass analysis, tandem mass spectrometry (MS2) and gas-phase separation by ion mobility mass spectrometry (IM-MS). The entire analysis is performed in the mass spectrometer ("top-down" approach) within milliseconds and with high sensitivity, as demonstrated for hybrid materials composed of hydrophobic poly(tert-butyl acrylate) (PtBA) or hydrophilic poly(acrylic acid) (PAA) blocks tethered to the hydrophobic decapeptide VPGVGVPGVG (VG2) via triazole linkages. The composition of the major products can be rapidly surveyed by MALDI-MS and MS2. For a more comprehensive characterization, the ESI-IM-MS (and MS2) combination is more suitable, as it separates the hybrid materials based on their unique charges and shapes from unconjugated polymer and partially hydrolyzed products. Such separation is essential for reducing spectral congestion, deconvoluting overlapping compositions and enabling straightforward structural assignments, both for the hybrid copolymers as well as the polymer and peptide reactants. The IM dimension also permits the measurement of collision cross-sections (CCSs), which reveal molecular architecture. The MS and MS2 spectra of the mobility separated ions conclusively showed that [PtBA-VG2](m) and [PAA-VG2](m) chains with the expected compositions and sequences were formed. Single and double copolymer blocks (m = 1-2) could be detected. Further, the CCSs of the hybrids, which were prepared via azide/alkyne cycloadditions, confirmed the formation of macrocyclic structures. The top-down methodology described would be particularly useful for the detection and identification of peptide/protein-polymer conjugates which are increasingly used in biomedical and pharmaceutical applications.
机译:引入了多维质谱(MS)方法,用于无法结晶或色谱纯化的聚合物-肽(或聚合物-蛋白质)共聚物的分子水平表征。它包括电喷雾电离(ESI)或基质辅助激光解吸电离(MALDI),以及质量分析,串联质谱(MS2)和通过离子迁移质谱(IM-MS)进行气相分离。整个分析是在质谱仪(“自上而下”的方法)内在几毫秒内完成的,并且具有很高的灵敏度,这对于由疏水性聚丙烯酸叔丁酯(PtBA)或亲水性聚丙烯酸( PAA)通过三唑键连接到疏水性十肽VPGVGVPGVG(VG2)上。主要产品的成分可以通过MALDI-MS和MS2进行快速调查。为了更全面地表征,ESI-IM-MS(和MS2)组合更适合,因为它将基于杂化材料的独特电荷和形状将杂化材料与未结合的聚合物和部分水解的产品分开。对于杂化共聚物以及聚合物和肽反应物而言,这种分离对于减少光谱拥塞,使重叠的组合物解卷积以及实现简单的结构分配都是必不可少的。 IM尺寸还允许测量碰撞截面(CCS),其揭示了分子结构。迁移率分离离子的MS和MS2光谱结果表明,已形成具有预期组成和序列的[PtBA-VG2](m)和[PAA-VG2](m)链。可以检测到单和双共聚物嵌段(m = 1-2)。此外,通过叠氮化物/炔烃环加成反应制备的杂化体的CCSs证实了大环结构的形成。所描述的自上而下的方法学对于检测和鉴定越来越多地用于生物医学和制药应用中的肽/蛋白质-聚合物缀合物特别有用。

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