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血浆蛋白质组学用于生物标志物发现:一项蓝色研究。

Plasma proteomics for biomarker discovery: a study in blue.

机构信息

Department of Chemistry, Materials and Chemical Engineering Giulio Natta, Politecnico di Milano, Milano, Italy.

出版信息

Electrophoresis. 2011 Dec;32(24):3638-44. doi: 10.1002/elps.201100307.

Abstract

The performance of Cibacron Blue dye (HiTrapBlue or Affigel Blue) in depleting albumin from plasma, as a pre-treatment for biomarker searching in the low-abundance proteome, is here assessed. It is shown that (i) co-depletion of non-albumin species is an ever-present hazard; (ii) the only proper eluant able to release quantitatively the proteins bound to the dye is boiling 4% SDS-25 mM DTT, an ion shock (2 M NaCl) being quite ineffective in releasing the low-abundance species tightly bound to the dye moiety; (iii) the mechanism of dye-protein interaction, after an initial ion-ion docking, is a robust hydrophobic interaction, which progressively augments at lower and lower pH values; (iv) at pH 2.2 in the presence of 0.1% TFA, the blue resin behaves, for all practical purposes, just as a reverse-phase chromatography column, since all residual proteins present in plasma are completely harvested. However Cibacron Blue technology should not necessarily be discarded: As long as also the plasma fraction adsorbed is properly released and analyzed, together with the flow through, one should be able to perform a viable analysis of the low-abundance proteome.

摘要

本文评估了 Cibacron Blue 染料(HiTrapBlue 或 Affigel Blue)在从血浆中去除白蛋白以作为低丰度蛋白质组生物标志物搜索前处理的性能。结果表明:(i)非白蛋白物种的共去除是一个始终存在的危险;(ii)唯一能够定量释放与染料结合的蛋白质的适当洗脱液是煮沸的 4% SDS-25 mM DTT,离子冲击(2 M NaCl)在释放与染料部分紧密结合的低丰度物质时非常无效;(iii)染料-蛋白质相互作用的机制,在初始的离子-离子对接后,是一种强大的疏水性相互作用,在更低和更低的 pH 值下逐渐增强;(iv)在存在 0.1% TFA 的情况下,蓝色树脂在所有实际目的上都表现为反相色谱柱,因为存在于血浆中的所有残留蛋白质都被完全收集。然而,Cibacron Blue 技术不一定需要被摒弃:只要与流经的物质一起适当释放和分析吸附的血浆部分,就应该能够对低丰度蛋白质组进行可行的分析。

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