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Rat plasma proteomics: Effects of abundant protein depletion on proteomic analysis

机译:大鼠血浆蛋白质组学:大量蛋白质消耗对蛋白质组学分析的影响

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The proteomic analysis of plasma and serum samples represents a formidable challenge due to the presence of a few highly abundant proteins such as albumin and immunoglobulins. Detection of low abundance protein biomarkers requires therefore either the specific depletion of high abundance proteins with immunoaffinity columns and/or optimized protein fractionation methods based on charge, size or hydrophobicity. Here we describe the depletion of seven abundant rat plasma proteins with an immunoaffinity column with coupled antibodies directed against albumin, IgG, transferrin, IgM, haptoglobin, fibrinogen and alpha 1-anti-trypsin. The IgY-R7-LC2 (Beckman Coulter) column showed high specificity for the targeted proteins and was able to efficiently remove most of the albumin, IgG and transferrin from rat plasma samples as judged by Western blot analysis. Depleted rat plasma protein samples were analyzed by SELDI-TOF MS, 2 D SDS-PAGE and 2D-LC and compared to non-depleted plasma samples as well as to the abundant protein fraction that was eluted from the immunoaffinity column. Analysis of the depleted plasma protein fraction revealed improved signal to noise ratios, regardless of which proteomic method was applied. However, only a small number of new proteins were observed in the depleted protein fraction. Immunoaffinity depletion of abundant plasma proteins results in the significant dilution of the original sample which complicates subsequent analysis. Most proteomic approaches require specialized sample preparation procedures during which significant losses of less abundant proteins and potential biomarkers can occur. Even though abundant protein depletion reduces the dynamic range of the plasma proteome by about 2-3 orders of magnitude, the difference between medium-abundant and low abundant plasma proteins is still in the range of 7-8 orders of magnitude and beyond the dynamic range of current proteomic technologies. Thus, exploring the plasma proteome in greater detail remains a daunting task. (c) 2006 Elsevier B.V. All rights reserved.
机译:血浆和血清样品的蛋白质组学分析面临巨大挑战,因为存在一些高度丰富的蛋白质,例如白蛋白和免疫球蛋白。因此,检测低丰度蛋白质生物标志物需要使用免疫亲和柱对高丰度蛋白质进行特定消耗和/或基于电荷,大小或疏水性的优化蛋白质分级分离方法。在这里,我们用免疫亲和柱和针对白蛋白,IgG,转铁蛋白,IgM,触珠蛋白,纤维蛋白原和α1-抗胰蛋白酶的偶联抗体描述了七个丰富的大鼠血浆蛋白的消耗。 IgY-R7-LC2(Beckman Coulter)色谱柱显示了对靶蛋白的高特异性,并且能够通过Western blot分析从大鼠血浆样品中有效去除大部分白蛋白,IgG和转铁蛋白。消耗的大鼠血浆蛋白样品通过SELDI-TOF MS,2 D SDS-PAGE和2D-LC进行分析,并与未消耗的血浆样品以及从免疫亲和柱洗脱的丰富蛋白级分进行比较。血浆蛋白组分消耗的分析表明,无论采用哪种蛋白质组方法,信噪比均得到改善。但是,在耗尽的蛋白质部分中仅观察到少量的新蛋白质。大量血浆蛋白的免疫亲和力耗竭会导致原始样品的显着稀释,从而使后续分析变得复杂。大多数蛋白质组学方法需要专门的样品制备程序,在此过程中可能会丢失大量较不丰富的蛋白质和潜在的生物标记。尽管丰富的蛋白质消耗将血浆蛋白质组的动态范围降低了约2-3个数量级,但中度丰富和低丰度血浆蛋白之间的差异仍在7-8个数量级的范围内,并且超出了动态范围当前的蛋白质组学技术。因此,更详细地探索血浆蛋白质组仍然是艰巨的任务。 (c)2006 Elsevier B.V.保留所有权利。

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