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Magnetic Binary Metal Oxides Affinity Probe for Highly Selective Enrichment of Phosphopeptides

机译:磁性二元金属氧化物亲和力探针,可选择性富集磷酸肽

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In this work, for the first time, binary metal oxides ((Ti—Sn)O4) were integrated into one entity on an atomic scale on magnetic graphene as affinity probe for highly selective enrichment of phosphopeptides. The newly prepared Fe3O4/graphene/(Ti-Sn)O4 (magG/(Ti-Sn)O4) composites gathered the advantages of large specific surface area of graphene, super-paramagnetism, and biocompatibility of iron oxide, and enhanced affinity properties of binary metal oxides. The phosphopeptide enrichment efficiency of the magG/(Ti—Sn)O4 composite was investigated, and the results indicated an ultralow detection limit (1 pg/μL or 4.0 X 10~(-11) M) and an ultrahigh selectivity (weight ratio of β-casein and BSA reached up to 1:1500). Compared with magnetic affinity probes with single metal oxide (magG/TiO2, magG/SnO2) or the simple physical mixture of magG/TiO2 and magG/SnO2, the magG/ (Ti—Sn)O4 composite possessed stronger specificity, higher selectivity and better efficiency; and more importantly, it possessed the ability to enrich both the mono-and multi-phosophorylated peptides, demonstrating the notable features of the novel binary metal oxides affinity probe in the specific and selective enrichment of phosphopeptides. Additionally, by utilizing the magG/(Ti— Sn)O4 composites, a total number of 349 phosphorylation sites on 170 phosphopeptides including 66 monophosphopeptides and 104 multiphosphopeptides were captured and identified from mouse brain, indicating the great potential for their application in phosphoproteomics analysis in the future.
机译:在这项工作中,首次将二价金属氧化物((Ti-Sn)O4)在磁性石墨烯上以原子级集成到一个实体中,作为亲和探针用于磷酸肽的高选择性富集。新制备的Fe3O4 /石墨烯/(Ti-Sn)O4(magG /(Ti-Sn)O4)复合材料具有石墨烯比表面积大,超顺磁性和氧化铁的生物相容性以及增强的氧化铁亲和性的优点。二元金属氧化物。研究了magG /(Ti-Sn)O4复合物的磷肽富集效率,结果表明检测限超低(1 pg /μL或4.0 X 10〜(-11)M)和超高选择性(重量比为β-酪蛋白和BSA达到1:1500)。与单金属氧化物(magG / TiO2,magG / SnO2)或magG / TiO2和magG / SnO2的简单物理混合物的磁性亲和探针相比,magG /(Ti-Sn)O4复合物具有更强的特异性,更高的选择性和更好的性能效率;更重要的是,它具有丰富单磷酸化和多磷酸化的肽的能力,证明了新型二元金属氧化物亲和力探针在磷酸肽的特异性和选择性富集中的显着特征。另外,通过利用magG /(Ti-Sn)O4复合材料,从小鼠大脑中捕获并鉴定了170个磷酸肽上的349个磷酸化位点,包括66个单磷酸肽和104个多磷酸肽,这表明它们在磷酸化蛋白质组学分析中的巨大应用潜力。未来。

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