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基于凝胶电泳的植物蛋白质组学:过去、现在和未来。祝《蛋白质组学杂志》创刊十周年快乐!

Gel electrophoresis-based plant proteomics: Past, present, and future. Happy 10th anniversary Journal of Proteomics!

机构信息

Agricultural and Plant Biochemistry, Proteomics, and Systems Biology Research Group, Dept. of Biochemistry and Molecular Biology, University of Córdoba, UCO-CeiA3, Córdoba, Spain.

Faculty of Environmental and Food Sciences, Fukui University of Technology, Fukui, Japan.

出版信息

J Proteomics. 2019 Apr 30;198:1-10. doi: 10.1016/j.jprot.2018.08.016. Epub 2018 Aug 29.

Abstract

In this century we have assisted at an unimaginable expansion of proteomics, with continuous innovations and optimizations in methods, techniques, protocols, equipment, and associated bioinformatics tools. We have moved forward very fast from first (gel electrophoresis based), to second (based on isotopic or isobaric labelling), to third (shotgun or gel-free, label-free), and to fourth (targeted, mass-western, or SRM/MRM) generation techniques. This evolution is clearly observed in the literature since 1994, when the term "proteome" was first coined, with plant proteomics progressing at a much lower speed than human and other model organisms. The question behind this review is: Is gel electrophoresis an obsolete technique? Is it still alive? The answer is that gel electrophoresis is still a valid technique, with its own particularities, strengths, and weaknesses, "irreplaceable" in top-down experiments directed at investigating protein species, loci and allelic variants, and isoforms, as well as in the post-translational modifications and interactions studies; it is an excellent complementary and alternative approach that could lead us to achieve a deeper visualization and knowledge of the cell proteome. The past, present, and future of this technique is being reviewed. It is not pretended to discuss in detail technical aspects, referring to key original papers or previous reviews, but instead, how it has contributed, from a historical perspective, to plant proteomics and biology research. It is our personal congratulations to "Journal of Proteomics" that celebrates this year its 10th anniversary, and, at the same time, a tribute to those scientists who have contributed to the establishment and development of the gel electrophoresis technique and its application to proteomics and plant biology research. Their direct or indirect teaching has been very valuable to those of us who once decided to enter proteomics, with no access to any sophisticated and expensive equipment. This gel electrophoresis-based plant proteomics review is divided into the following sections: introduction, history, methodology, contribution to plant biology research, and future directions.

摘要

本世纪,蛋白质组学得到了前所未有的发展,其方法、技术、方案、设备和相关生物信息学工具不断创新和优化。我们从第一代(基于凝胶电泳)、第二代(基于同位素或等压标记)、第三代(shotgun 或无凝胶、无标记)和第四代(靶向、质量 Western 或 SRM/MRM)技术快速发展。自 1994 年首次提出“蛋白质组”一词以来,这一发展在文献中清晰可见,植物蛋白质组学的发展速度远低于人类和其他模式生物。本文的问题是:凝胶电泳是一种过时的技术吗?它还活着吗?答案是,凝胶电泳仍然是一种有效的技术,具有其自身的特点、优势和劣势,在针对蛋白质物种、基因座和等位基因变异体以及同工型的自上而下实验以及翻译后修饰和相互作用研究中是“不可替代”的;它是一种极好的补充和替代方法,可以使我们更深入地了解细胞蛋白质组。本文回顾了该技术的过去、现在和未来。本文不打算详细讨论技术方面的问题,而是参考关键的原始论文或以前的综述,而是从历史的角度讨论它如何为植物蛋白质组学和生物学研究做出贡献。我们向《蛋白质组学杂志》(Journal of Proteomics)表示祝贺,该杂志今年迎来了它的 10 周年纪念日,同时向那些为建立和发展凝胶电泳技术及其在蛋白质组学和植物生物学研究中的应用做出贡献的科学家们致敬。他们的直接或间接教学对我们这些曾经决定进入蛋白质组学领域、无法使用任何复杂和昂贵设备的人来说非常有价值。基于凝胶电泳的植物蛋白质组学综述分为以下几个部分:引言、历史、方法、对植物生物学研究的贡献以及未来方向。

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