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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Reduction of protein concentration range difference followed by multicolumn fractionation prior to 2-DE and LC-MS/MS profiling of serum proteins.
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Reduction of protein concentration range difference followed by multicolumn fractionation prior to 2-DE and LC-MS/MS profiling of serum proteins.

机译:降低蛋白质浓度范围的差异,然后进行2-DE和血清蛋白的LC-MS / MS分析之前的多柱分级分离。

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摘要

This article is concerned with the reduction of protein concentration range differences by the peptide beads library technology (ProteoMiner or "equalizer" technology), which in principle allows the enrichment of proteins to the same concentration level (i.e. protein equalizer) regardless of the original protein abundance in a given biological fluid such as human serum, which is the subject of our investigation. After the equalization step, the captured proteins from human serum were fractionated on a series of tandem monolithic columns with surface-bound iminodiacetic acid ligands to which three different metal ions, namely, Zn(2)+, Ni(2)+ and Cu(2)+ were immobilized to yield the so-called immobilized metal affinity chromatography columns. These three monolithic columns were connected to a reversed-phase column packed with polystyrene divinyl benzene beads. Aliquots taken from the four collected fractions from the four tandem columns were subsequently fractionated by 2-DE. Also, aliquots from the four collected fractions were tryptically digested and analyzed by LC-MS/MS. The strategy of subsequent fractionation on the four tandem columns after equalization allowed the identification of more proteins than simply using the equalization by ProteoMiner . The equalizer technology was compared to the immuno-subtraction approach. While the ProteoMiner technology is superior in terms of the overall number of captured proteins, it only complements the immuno-subtraction approach since the latter can capture the proteins that were not captured by the former.
机译:本文关注的是通过肽珠库技术(ProteoMiner或“均衡器”技术)减少蛋白质浓度范围差异,该技术原则上允许将蛋白质富集到相同的浓度水平(即蛋白质均衡器),而与原始蛋白质无关给定生物液体(例如人血清)中的丰度是我们研究的主题。均衡步骤后,将人血清中捕获的蛋白质在一系列串联的整体柱上进行分级分离,该串联柱具有表面结合的亚氨基二乙酸配体,三种不同的金属离子即Zn(2)+,Ni(2)+和Cu( 2)+被固定以产生所谓的固定的金属亲和色谱柱。将这三个整体柱连接到装有聚苯乙烯二乙烯基苯珠粒的反相柱。随后通过2-DE对从四个串联塔的四个收集馏分中提取的等分试样进行分馏。同样,对来自四个收集馏分的等分试样进行胰蛋白酶消化,并通过LC-MS / MS进行分析。均衡后在四个串联色谱柱上进行后续分馏的策略使鉴定更多的蛋白质,而不仅仅是使用ProteoMiner进行的均衡。将均衡器技术与免疫减法相比较。尽管ProteoMiner技术在捕获的蛋白质总数方面是优越的,但它仅是对免疫减法的补充,因为后者可以捕获前者无法捕获的蛋白质。

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