A Review on Innovating the Concept and Practice of Two-Dimensional Gel Electrophoresis in the Analysis of Proteomes at the Proteoform Level

X. Zhan, Biao Li, X. Zhan, H. Schlüter, P. Jungblut, J. Coorssen
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Abstract

Two-dimensional gel electrophoresis (2DE) is an important and well-established technical platform enabling extensive top-down proteomic analysis. However, the long-held but now largely outdated conventional concepts of 2DE have clearly impacted its application to in-depth investigations of proteomes at the level of protein species/proteoforms. It is time to popularize a new concept of 2DE for proteomics. With the development and enrichment of the proteome concept, any given “protein” is now recognized to consist of a series of proteoforms. Thus, it is the proteoform, rather than the canonical protein, that is the basic unit of a proteome, and each proteoform has a specific isoelectric point (pI) and relative mass (Mr). Accordingly, using 2DE, each proteoform can routinely be resolved and arrayed according to its different pI and Mr. Each detectable spot contains multiple proteoforms derived from the same gene, as well as from different genes. Proteoforms derived from the same gene are distributed into different spots in a 2DE pattern. High-resolution 2DE is thus actually an initial level of separation to address proteome complexity and is effectively a pre-fractionation method prior to analysis using mass spectrometry (MS). Furthermore, stable isotope-labeled 2DE coupled with high-sensitivity liquid chromatography-tandem MS (LC-MS/MS) has tremendous potential for the large-scale detection, identification, and quantification of the proteoforms that constitute proteomes. Overall, the beauty and power of this coupled 2DE-LC-MS/MS methodology is its inherent capacity to capitalize on the combination of refined top-down and bottom-up analytical approaches. The capacity for genuine deep proteome analysis at the critical proteoform level is now a definite reality.
二维凝胶电泳在蛋白质组分析中的概念创新与实践综述
二维凝胶电泳(2DE)是一个重要的和完善的技术平台,使广泛的自上而下的蛋白质组学分析。然而,长期持有但现在基本上过时的传统2DE概念显然影响了其在蛋白质物种/蛋白质形态水平上对蛋白质组学的深入研究。是时候在蛋白质组学中推广2DE的新概念了。随着蛋白质组概念的发展和丰富,任何给定的“蛋白质”现在都被认为是由一系列的蛋白质形态组成的。因此,蛋白质组的基本单位是蛋白质形式,而不是典型蛋白质,并且每个蛋白质形式都有特定的等电点(pI)和相对质量(Mr)。因此,使用2DE,每个蛋白质形态可以根据其不同的pI和mr进行常规分解和排列,每个可检测的点包含来自同一基因的多个蛋白质形态,以及来自不同基因的多个蛋白质形态。源自同一基因的变形形式以2DE模式分布在不同的点上。因此,高分辨率2DE实际上是解决蛋白质组复杂性的初始分离水平,是质谱分析(MS)之前有效的预分离方法。此外,稳定同位素标记的2DE结合高灵敏度液相色谱-串联质谱(LC-MS/MS)在大规模检测、鉴定和定量构成蛋白质组的蛋白质形态方面具有巨大的潜力。总的来说,这种耦合的2DE-LC-MS/MS方法的优点和强大之处在于其固有的能力,即利用精细的自顶向下和自底向上分析方法的组合。在关键的蛋白质形态水平上进行真正的深层蛋白质组分析的能力现在是一个明确的现实。
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