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免疫去除人血清蛋白的反相高效液相色谱预分级分离,以增强低丰度蛋白的质谱鉴定。

Reversed-phase high-performance liquid chromatographic prefractionation of immunodepleted human serum proteins to enhance mass spectrometry identification of lower-abundant proteins.

作者信息

Martosella James, Zolotarjova Nina, Liu Hongbin, Nicol Gordon, Boyes Barry E

机构信息

Agilent Technologies, Integrated Biology Solutions, 2850 Centreville Rd., Wilmington, DE 19808, USA.

出版信息

J Proteome Res. 2005 Sep-Oct;4(5):1522-37. doi: 10.1021/pr050088l.

Abstract

Serum analysis represents an extreme challenge due to the dynamic range of the proteins of interest, and the high structural complexity of the constituent proteins. In serum, the quantities of proteins and peptides of interest range from those considered "high abundance", present at 2-70% by mass of total protein, to those considered "low abundance", present at 10(-12) M or less. This range of analytical target molecules is outside the realm of available technologies for proteomic analysis. Therefore, in this study, we have developed a workflow toward addressing the complexity of these samples through the application of multidimensional separation techniques. The use of reversed-phase methods for the separation and fractionation of protein samples has been investigated, with the goal of developing an optimized serum separation for application to proteomic analysis. Samples of human serum were depleted of the six most abundant proteins, using an immunoaffinity LC method, then were separated under a variety of reversed-phase (RP) conditions using a macroporous silica C18 surface modified column material. To compare the qualities of the RP separations of this complex protein sample, absorbance chromatograms were compared, and fractions were collected for off-line SDS-PAGE and 2D-LC-MS/MS analysis. The column fractions were further investigated by determination of protein identities using either whole selected fractions, or gel bands excised from SDS-PAGE gels of the fractions. In either case samples underwent tryptic fragmentation and peptide analysis using MALDI-MS or LC-MS/MS. The preferred conditions for RP protein separation exhibited reproducibly high resolution and high protein recoveries (>98%, as determined by protein assay). Using the preferred conditions also permitted high column mass load, with up to 500 microg of protein well tolerated using a 4.6 mm ID x 50 mm column, or up to 1.5 mg on a 9.4 mm ID x 50 mm column. Elevated column temperature (80 degrees C) was observed to be a critical operational parameter, with poorer results observed at lower temperatures. The combination of sample simplification by immunoaffinity depletion combined with a robust and high recovery RP-HPLC fractionation yields samples permitting higher quality protein identifications by coupled LC-MS methods.

摘要

由于目标蛋白质的动态范围以及组成蛋白质的高度结构复杂性,血清分析极具挑战性。在血清中,目标蛋白质和肽的含量范围从占总蛋白质质量2 - 70%的“高丰度”蛋白质,到浓度为10⁻¹² M或更低的“低丰度”蛋白质。这种分析目标分子的范围超出了蛋白质组学分析现有技术的范畴。因此,在本研究中,我们开发了一种工作流程,通过应用多维分离技术来解决这些样品的复杂性问题。研究了使用反相方法分离和分级蛋白质样品,目的是开发一种优化的血清分离方法用于蛋白质组学分析。使用免疫亲和液相色谱法去除人血清样品中六种最丰富的蛋白质,然后使用大孔硅胶C18表面改性柱材料在各种反相(RP)条件下进行分离。为了比较这种复杂蛋白质样品的RP分离质量,比较了吸光度色谱图,并收集馏分用于离线SDS - PAGE和二维液相色谱 - 串联质谱(2D - LC - MS/MS)分析。通过使用整个选定馏分或从馏分的SDS - PAGE凝胶上切下的凝胶条带来确定蛋白质身份,进一步研究柱馏分。在任何一种情况下,样品都经过胰蛋白酶消化和使用基质辅助激光解吸电离质谱(MALDI - MS)或液相色谱 - 串联质谱(LC - MS/MS)进行肽分析。RP蛋白质分离的优选条件表现出可重复的高分辨率和高蛋白质回收率(通过蛋白质测定法测定,>98%)。使用优选条件还允许高柱质量负载,对于内径4.6 mm×50 mm的柱,可耐受高达500μg的蛋白质,对于内径9.4 mm×50 mm的柱,可耐受高达1.5 mg的蛋白质。观察到升高的柱温(80℃)是一个关键操作参数,在较低温度下结果较差。通过免疫亲和去除进行样品简化,再结合稳健且高回收率的RP - HPLC分级分离,能够得到可通过联用LC - MS方法进行更高质量蛋白质鉴定的样品。

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