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首页> 外文期刊>ACS applied materials & interfaces >Fe3O4/PVIM-Ni~(2+) Magnetic Composite Microspheres for Highly Specific Separation of Histidine-Rich Proteins
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Fe3O4/PVIM-Ni~(2+) Magnetic Composite Microspheres for Highly Specific Separation of Histidine-Rich Proteins

机译:Fe3O4 / PVIM-Ni〜(2+)磁性复合微球用于富含组氨酸的蛋白质的高特异性分离

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摘要

Integration of the advantages of immobilized metal-ion affinity chromatography (IMAC) and magnetic microspheres is considered as an ideal pathway for quick and convenient separation of his-tagged proteins, but rare reports concern the natural histidine-rich proteins. In this article, a novel route was presented to fabricate magnetic microspheres composed of a high-magnetic-response magnetic supraparticle (Fe3O4) core and a Ni~(2+) immobxlized cross-linked polyvinyl imidazole (PVTM) shell via reflux-precipitation polymerization. The unique as-prepared Fe3O4/PVIM-Ni~(2+) microspheres possessed uniform flower-like structure, high magnetic responsiveness, abundant binding sites, and very easy synthesis process. Taking advantage of the pure PVIM-Ni~(2+) interface and high Ni~(2+) loading amount, the microspheres exhibited remarkable selectivity, excellent sensitivity, large enrichment capacity, and high recyclability in immobilization and separation of his-tagged recombinant proteins. More interestingly, it was found that the Fe3O4/PVIM-Ni~(2+) microspheres also showed excellent performance for removal of the natural histidine-rich bovine serum albumin (BSA) from the complex real sample of fetal bovine serum due to the exposed histidine residues. Considering their multiple merits, this new type of Fe3O4/PVIM-Ni~(2+) nanomaterial displays great potential in enriching low-abundant his-tagged proteins or removing high-abundant histidine-rich natural proteins for proteomic analysis.
机译:固定化金属离子亲和色谱(IMAC)和磁性微球的优势整合被认为是快速,方便地分离带有组氨酸标签的蛋白质的理想途径,但鲜有报道涉及富含组氨酸的天然蛋白质。在本文中,提出了一种新颖的途径,通过回流沉淀聚合反应制备由高磁响应磁性超颗粒(Fe3O4)核和Ni〜(2+)固定化交联聚乙烯基咪唑(PVTM)壳组成的磁性微球。制备的独特的Fe3O4 / PVIM-Ni〜(2+)微球具有均匀的花状结构,高磁响应性,丰富的结合位点和非常容易的合成过程。利用纯PVIM-Ni〜(2+)界面和高Ni〜(2+)负载量,微球在固定和分离带有his标签的重组体中表现出显着的选择性,出色的灵敏度,富集能力和高可回收性。蛋白质。更有趣的是,由于暴露于外,Fe3O4 / PVIM-Ni〜(2+)微球也显示出优异的性能,可从复杂的真实牛血清样品中去除富含组氨酸的天然牛血清白蛋白(BSA)。组氨酸残基。考虑到它们的多重优点,这种新型的Fe3O4 / PVIM-Ni〜(2+)纳米材料在富集低丰度组氨酸标签的蛋白质或去除高丰度富含组氨酸的天然蛋白质进行蛋白质组学分析方面显示出巨大的潜力。

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