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“面颊到面颊”通过组合肽配体文库的尿蛋白质组分析:一种新颖的、意想不到的洗脱系统。

"Cheek-to-cheek" urinary proteome profiling via combinatorial peptide ligand libraries: A novel, unexpected elution system.

机构信息

Laboratory on Pathophysiology of Uremia, G. Gaslini Children Hospital, Genoa, Italy.

出版信息

J Proteomics. 2012 Jan 4;75(3):796-805. doi: 10.1016/j.jprot.2011.09.018. Epub 2011 Oct 1.

Abstract

A new method is here reported for facile elution of the human urinary proteome after being captured with combinatorial peptide ligand libraries (CPLL, ProteoMiner). It consists in challenging the beads with 100mM Tris, pH 7.4, or with 100mM Lys, pH 7.4 or even better with a mixture of Lys, Arg, Asp and Glu (150mM final concentration). These elutions permit recovery of species in a native form, for monitoring any biological activity of the eluted species, while avoiding the noxious presence of sodium dodecyl sulphate (SDS), reported as the best eluant so far from CPLL beads. SDS, albeit permitting quantitative recovery from the beads, has to be removed from the sample prior to mass spectrometry analysis. This unorthodox elution, which most likely will work only for urine samples, seems to be due to the fact that bile salts and urinary pigments are massively adsorbed by the beads, thus masking the hydrophobic binding sites of aromatic and non-aromatic amino acids. The binding thus occurs mostly via ionic and hydrogen bond interactions via the "Grand Catchers" Arg, Lys, His, which can then be easily challenged by positively charged species, such a Tris, free Lys and free Arg in the eluant as well as by negatively charged compounds, such as Glu and Asp. When eluting with the four-amino acid mix, at least 3300 spots can be visualized in a 2D map.

摘要

本文报道了一种从组合肽配体文库(CPLL,ProteoMiner)捕获的人尿蛋白质组中进行简便洗脱的新方法。该方法是用 100mM Tris(pH 7.4)、100mM Lys(pH 7.4)或 Lys、Arg、Asp 和 Glu(终浓度为 150mM)的混合物对珠子进行洗脱。这些洗脱液可使洗脱物以天然形式回收,以监测洗脱物的任何生物学活性,同时避免使用十二烷基硫酸钠(SDS),SDS 迄今为止被报道为从 CPLL 珠子中洗脱的最佳洗脱液,但 SDS 的存在具有毒性。尽管 SDS 可以从珠子上定量回收,但在进行质谱分析之前,必须从样品中去除 SDS。这种非传统的洗脱方法似乎只适用于尿液样本,很可能是由于胆汁盐和尿色素被珠子大量吸附,从而掩盖了芳香族和非芳香族氨基酸的疏水性结合位点。因此,结合主要通过“大捕获器”Arg、Lys、His 的离子和氢键相互作用发生,这些结合位点可以很容易地被洗脱液中的带正电荷的物质(如 Tris、游离 Lys 和游离 Arg)以及带负电荷的化合物(如 Glu 和 Asp)所挑战。当用四氨基酸混合物洗脱时,至少可以在 2D 图谱上观察到 3300 个斑点。

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