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基于氢键的智能聚合物用于多重磷酸化肽的高选择性和可调捕获。

Hydrogen bond based smart polymer for highly selective and tunable capture of multiply phosphorylated peptides.

作者信息

Qing Guangyan, Lu Qi, Li Xiuling, Liu Jing, Ye Mingliang, Liang Xinmiao, Sun Taolei

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, 122 Luoshi Road, Wuhan, 430070, China.

Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, China.

出版信息

Nat Commun. 2017 Sep 6;8(1):461. doi: 10.1038/s41467-017-00464-0.

Abstract

Multisite phosphorylation is an important and common mechanism for finely regulating protein functions and subsequent cellular responses. However, this study is largely restricted by the difficulty to capture low-abundance multiply phosphorylated peptides (MPPs) from complex biosamples owing to the limitation of enrichment materials and their interactions with phosphates. Here we show that smart polymer can serve as an ideal platform to resolve this challenge. Driven by specific but tunable hydrogen bonding interactions, the smart polymer displays differential complexation with MPPs, singly phosphorylated and non-modified peptides. Importantly, MPP binding can be modulated conveniently and precisely by solution conditions, resulting in highly controllable MPP adsorption on material surface. This facilitates excellent performance in MPP enrichment and separation from model proteins and real biosamples. High enrichment selectivity and coverage, extraordinary adsorption capacities and recovery towards MPPs, as well as high discovery rates of unique phosphorylation sites, suggest its great potential in phosphoproteomics studies.Capture of low-abundance multiply phosphorylated peptides (MPPs) is difficult due to limitation of enrichment materials and their interactions with phosphates. Here the authors show, a smart polymer driven by specific but tunable hydrogen bonding interactions can differentially complex with MPPs, singly phosphorylated and non-modified peptides.

摘要

多位点磷酸化是精细调节蛋白质功能及后续细胞反应的一种重要且常见的机制。然而,由于富集材料的局限性及其与磷酸盐的相互作用,从复杂生物样品中捕获低丰度多重磷酸化肽(MPP)的研究在很大程度上受到限制。在此,我们表明智能聚合物可作为解决这一挑战的理想平台。在特定但可调节的氢键相互作用驱动下,智能聚合物与MPP、单磷酸化肽和未修饰肽表现出不同的络合作用。重要的是,MPP的结合可通过溶液条件方便且精确地调节,从而使MPP在材料表面的吸附具有高度可控性。这有助于在从模型蛋白和真实生物样品中富集和分离MPP方面表现出优异性能。高富集选择性和覆盖率、对MPP的非凡吸附能力和回收率,以及独特磷酸化位点的高发现率,表明其在磷酸化蛋白质组学研究中具有巨大潜力。由于富集材料的局限性及其与磷酸盐的相互作用,捕获低丰度多重磷酸化肽(MPP)很困难。在此,作者表明,由特定但可调节的氢键相互作用驱动的智能聚合物可与MPP、单磷酸化肽和未修饰肽发生不同的络合作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3f7/5587758/09107c065a79/41467_2017_464_Fig1_HTML.jpg

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