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Facile Analysis and Sequencing of Linear and Branched Peptide Boronic Acids by MALDI Mass Spectrometry

机译:MALDI质谱分析线性和支链肽硼酸的简便方法和测序方法

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Interest in peptides incorporating boronic acid moieties is increasing due to their potential as therapeutics/diagnostics for a variety of diseases such as cancer. The utility of peptide boronic acids may be expanded with access to vast libraries that can be deconvoluted rapidly and economically. Unfortunately, current detection protocols using mass spectrometry are laborious and confounded by boronic acid trimerization, which requires time-consuming analysis of dehydration products. These issues are exacerbated when the peptide sequence is unknown, as with de novo sequencing, and especially when multiple boronic acid moieties are present. Thus, a rapid, reliable, and simple method for peptide identification is of utmost importance. Herein, we report the identification and sequencing of linear and branched peptide boronic acids containing up to five boronic acid groups by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). Protocols for preparation of pinacol boronic esters were adapted for efficient MALDI analysis of peptides. Additionally, a novel peptide boronic acid detection strategy was developed in which 2,5-dihydroxybenzoic acid (DHB) served as both matrix and derivatizing agent in a convenient, in situ, on-plate esterification. Finally, we demonstrate that DHB-modified peptide boronic acids from a single bead can be analyzed by MALDI-MSMS analysis, validating our approach for the identification and sequencing of branched peptide boronic acid libraries.
机译:由于掺入硼酸部分的肽作为多种疾病例如癌症的治疗剂/诊断剂的潜力,因此对其的兴趣正在增加。可以使用庞大的文库来扩展肽硼酸的用途,该文库可以快速,经济地进行去卷积。不幸的是,当前使用质谱的检测方案费力并且会因硼酸三聚作用而混乱,这需要耗时的脱水产物分析。当肽序列未知时(如从头测序),尤其是当存在多个硼酸部分时,这些问题会加剧。因此,快速,可靠和简单的肽鉴定方法至关重要。本文中,我们报告了通过基质辅助激光解吸/电离质谱法(MALDI-MS)鉴定和测序的线性和支链肽硼酸,其中硼酸最多包含五个基团。制备频哪醇硼酸酯的方案适用于肽的有效MALDI分析。另外,开发了一种新颖的肽硼酸检测策略,其中2,5-二羟基苯甲酸(DHB)在方便的原位板上酯化反应中既充当基质,又充当衍生剂。最后,我们证明可以通过MALDI-MSMS分析来分析来自单个珠子的DHB修饰的肽硼酸,从而验证了我们鉴定和测序支链肽硼酸文库的方法。

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