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Single-Step Enrichment of N-Glycopeptides and Phosphopeptides with Novel Multifunctional Ti4+-Immobilized Dendritic Polyglycerol Coated Chitosan Nanomaterials

机译:新型多功能Ti4 + -immobilized树突式多甘油涂覆壳聚糖纳米材料的单步富集N-糖肽和磷酸肽

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摘要

Protein glycosylation and phosphorylation, two of the most important post-translational modifications (PTMs) in the proteome, play a vital role in regulating a number of complex biological processes and involvement in a variety of diseases. Comprehensive characterization of the phosphoproteome and glycoproteome requires highly specific and sensitive enrichment methods of purification of phosphopeptides and glycopeptides because many glycoproteins and phosphoproteins naturally occur at low abundances and substoichiometry. Here, we reported a facile route to fabricate a novel multifunctional Ti4+-mmobilized dentritic polyglycerol CS@PGMA@ IDA (CS, chitosan; PGMA, poly(glycidyl methacrylate); IDA, iminodiacetic acid) nanomaterials. The polymer surface endows the nanomaterials with biocompatibility, excellent hydrophilic property, and a large amount of Ti4+ which have the property of immobilized metal ion affinity chromatography (IMAC)- and hydrophilic interaction liquid chromatography (HILIC)-based functional materials. The CS@PGMA@IDA-Ti4+ nanomaterials demonstrate an outstanding ability for N-glycopeptides and phosphopeptides enrichment simultaneously, evaluated by the extremely high binding capacity (150 mg g(-1)), sensitivity (above 0.1 fmol), and high enrichment recovery (above 75.4%). Its outstanding specificity and efficiency for purification of phosphopeptides is reflected in quantities as low as 1:5000 molar ratios of phosphopeptides which can be detected. Furthermore, we used CS@PGMA@IDA-Ti4+ to enrich for N-glycopeptides and phosphopeptides followed by PNGase F treatment, fractionated and separated N-glycopeptides and phosphopeptides with different eluents, and then analyzed by MS, a total of 423 (84.4 ID/mu g, 3.525 ID/min) N-glycopeptides in 235 different glycoproteins and 422 (84.4 ID/mu g, 3.517 ID/min) phosphopeptides in 256 different phosphoproteins which were finally identified in two independent LC-MS/MS runs (with a total time of 120 min) from 50 mu g of mouse liver. The results demonstrated that the method based on CS@PGMA@IDA-Ti4+ to single-step enrichment of N-glycopeptides and phosphopeptides is simple, efficient, specific, and compatible to MS. It can be expected that CS@PGMA@LDA-Ti4+ would hold great applicability of modification-based proteomics to the precious and low amounts of clinical samples.
机译:蛋白质糖基化和磷酸化,蛋白质组中最重要的翻译后修饰(PTMS)中的两种,在调节许多复杂的生物过程和参与各种疾病方面发挥着至关重要的作用。磷蛋白酶组和糖蛋白组的综合表征需要高度特异性和敏感的富集磷酸肽和糖肽的方法,因为许多糖蛋白和磷蛋白在低丰度和算术中产生了许多糖蛋白和磷蛋白。在这里,我们报道了一种易于制造新型多功能Ti4 + -mmobilized牙霉素聚甘油Cs @ PGMA @ IDA(CS,壳聚糖; PGMA,聚(甲基丙烯酸缩水甘油酯); IDA,甲基乙基酸)纳米材料的纳米材料的裂缝途径。聚合物表面赋予纳米材料具有生物相容性,优异的亲水性和大量Ti4 +,其具有固定的金属离子亲和层析(IMAC)和亲水性相互作用液相色谱(HILIC)基官能材料的性质。 CS @ PGMA @ IDA-Ti4 +纳米材料同时表明了N-糖肽和磷酸肽的卓越能力,通过极高的结合能力(150mg G(-1)),敏感性(0.1fmol)和高富集回收率(超过75.4%)。其出色的特异性和磷酸化纯化的效率在可以检测的1:5000摩尔比的量上反映。此外,我们使用CS @ PGMA @ IDA-Ti4 +以富集N-糖肽和磷酸肽,然后用PNGase F处理,分级和分离与不同洗脱液的磷肽和磷肽,然后通过MS分析,共423(84.4件/ mu g,3.525 id / min)在235个不同的糖蛋白和422(84.4 id / mu g,3.517 id / min)磷酸肽中的256种不同的磷蛋白,最终在两个独立的LC-MS / MS运行中鉴定(用从50μg小鼠肝脏的总时间为120分钟)。结果证明,基于CS @ PGMA @ IDA-Ti4 +的方法是单步富集的N-糖肽和磷酸肽,简单,有效,特异性,并且与MS相容。可以预期CS @ PGMA @ LDA-TI4 +将使基于修饰的蛋白质组学的良好适用性保持在珍贵和少量的临床样本。

著录项

  • 来源
    《Analytical chemistry》 |2017年第14期|共7页
  • 作者单位

    Peking Univ Beijing Key Lab Tumor Syst Biol Med &

    Hlth Analyt Ctr Xueyuan Rd 38 Beijing 100191 Peoples R China;

    China Japan Friendship Hosp Dept Gastrointestinal Surg 2 Yinghua Dongjie Beijing 100029 Peoples R China;

    Peking Univ Beijing Key Lab Tumor Syst Biol Med &

    Hlth Analyt Ctr Xueyuan Rd 38 Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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