Orekhovich Institute of Biomedical Chemistry of Russian Academy of Medical Sciences, Pogodinskaya 10, Moscow 119121, Russia; B.P. Konstantinov Petersburg Nuclear Physics Institute, National Research Center "Kurchatov Institute", Gatchina, Leningrad Region 188300, Russia.
J Proteomics. 2019 Jan 16;191:22-28. doi: 10.1016/j.jprot.2018.05.008. Epub 2018 May 16.
The main intricacy in the human proteome is that it is tremendously complex and composed from diverse and heterogeneous gene products. These products are called protein species or proteoforms and are the smallest units of the proteome. In pursuit of the comprehensive profiling of the human proteome, significant advances in the technology of so called "Top-Down" mass spectrometry based proteomics, have been made. However, the scale of performance of this approach is still far behind the "Bottom-Up", peptide-centric techniques. The classical two-dimensional electrophoresis (2-DE) as the most powerful and convenient method for separation of proteoforms remains as a superior method in "Top-Down" proteomics. Here, some aspects of approaches for establishing an inventory of proteoforms based on 2-DE and mass spectrometry are discussed. BIOLOGICAL SIGNIFICANCE: The systematic efforts in the Human Proteome project to map the entire human proteome greatly depend on currently available and emerging techniques and approaches. Here, the possibilities of a visual representation of the human proteome by combination of virtual/experimental 2-DE with protein identification by mass spectrometry or immunologically is discussed. By application of this approach on several profiles of gene products we show its convenience in informative representation of the whole proteome and single gene products, proteoforms (protein species). This approach could be very helpful in the emerging global inventory of all human proteoforms.
人类蛋白质组的主要复杂性在于它非常复杂,由多种和异质的基因产物组成。这些产物被称为蛋白质物种或蛋白质形式,是蛋白质组的最小单位。为了全面描绘人类蛋白质组,所谓的“自上而下”基于质谱的蛋白质组学技术取得了重大进展。然而,这种方法的性能规模仍远远落后于基于肽的“自下而上”技术。经典的二维电泳(2-DE)作为分离蛋白质形式的最强大和方便的方法,仍然是“自上而下”蛋白质组学中的一种优越方法。在这里,讨论了基于 2-DE 和质谱建立蛋白质形式清单的方法的一些方面。生物学意义:人类蛋白质组计划中绘制整个人类蛋白质组的系统努力在很大程度上取决于当前可用和新兴的技术和方法。在这里,通过将虚拟/实验 2-DE 与通过质谱或免疫鉴定的蛋白质结合,讨论了人类蛋白质组的可视化表示的可能性。通过将该方法应用于几个基因产物的图谱,我们展示了其在整个蛋白质组和单个基因产物、蛋白质形式(蛋白质物种)的信息表示方面的便利性。该方法在新兴的人类所有蛋白质形式的全球清单中可能非常有帮助。