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均衡器技术——不同珠子的平等权利。

Equalizer technology--Equal rights for disparate beads.

机构信息

Max-Planck-Institute of Biochemistry, Protein Analysis Group, Martinsried, Germany.

出版信息

Proteomics. 2010 Jun;10(11):2089-98. doi: 10.1002/pmic.200900767.

Abstract

One major limitation in proteomics is the detection and analysis of low-abundant proteins, i.e. in plasma. Several years ago, a technique to selectively enrich the relative concentration of low-abundant proteins was introduced by Boschetti and co-workers. It is based on a specific and saturable interaction of proteins to a high diversity of binding sites, realized by a hexapeptide library coupled to beads. This technology was commercialized as Equalizer beads or ProteoMiner. However, during application of ProteoMiner beads to plasma samples unexpected results questioned the proposed mode of action. Therefore, ProteoMiner beads were compared with chromatographic beads exhibiting completely different surface chemistry. Sepabeads FP-OD400 octadecyl, FP-DA400 diethylamine, FP-BU400 butyl, FP-HG400 hydroxyl and EXE056 epoxy were used. The results show that ProteoMiner or the different Sepabeads behave surprisingly similarly in the separation of complex protein mixtures. ProteoMiner beads interact with protein mixtures according to a general hydrophobic binding mechanism, where diversity in surface ligands plays only a negligible role.

摘要

蛋白质组学的一个主要限制是检测和分析低丰度蛋白质,即在血浆中。几年前,Boschetti 及其同事引入了一种选择性富集低丰度蛋白质相对浓度的技术。它基于蛋白质与高多样性结合位点的特异性和饱和相互作用,通过与珠子偶联的六肽文库实现。这项技术被商业化,称为 Equalizer 珠子或 ProteoMiner。然而,在将 ProteoMiner 珠子应用于血浆样品时,意想不到的结果质疑了所提出的作用模式。因此,将 ProteoMiner 珠子与表现出完全不同表面化学性质的色谱珠子进行了比较。使用了 Sepabeads FP-OD400 十八烷基、FP-DA400 二乙胺、FP-BU400 丁基、FP-HG400 羟基和 EXE056 环氧。结果表明,ProteoMiner 珠子或不同的 Sepabeads 在复杂蛋白质混合物的分离中表现出惊人的相似性。ProteoMiner 珠子根据一般的疏水结合机制与蛋白质混合物相互作用,其中表面配体的多样性仅起微不足道的作用。

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