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神经蛋白质组学研究:挑战与进展

Neuroproteomics Studies: Challenges and Updates.

作者信息

Ramadan Naify, Ghazale Hussein, El-Sayyad Mohammad, El-Haress Mohamad, Kobeissy Firas H

机构信息

Department of Biochemistry and Molecular Genetics, Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Department of Family Medicine, University of Toledo, Toledo, OH, USA.

出版信息

Methods Mol Biol. 2017;1598:3-19. doi: 10.1007/978-1-4939-6952-4_1.

Abstract

The Human Genome Project in 2003 has resulted in the complete sequence of ~99% of the human genome paving the road for the Human Proteome Project (HPP) assessing the full characterization of the translated protein map of the 20,300 protein-coding genes. Consequently, the emerging of the proteomics field has successfully been adopted as the method of choice for the proteome characterization. Proteomics is a term that is used to encompass multidisciplinary approaches combining different technologies that aim to study the entire spectrum of protein changes at a specific physiological condition. Proteomics research has shown excellent outcomes in different fields, among which is neuroscience; however, the complexity of the nervous systems necessitated the genesis of a new subdiscipline of proteomics termed as "neuroproteomics." Neuroproteomics studies involve assessing the quantitative and qualitative aspects of nervous system components encompassing global dynamic events underlying various brain-related disorders ranging from neuropsychiatric disorders, degenerative disorders, mental illness, and most importantly brain-specific neurotrauma-related injuries. In this introductory chapter, we will provide a brief historical perspective on the field of neuroproteomics. In doing so, we will highlight on the recent applications of neuroproteomics in the areas of neurotrauma, an area that has benefitted from neuroproteomics in terms of biomarker research, spatiotemporal injury mechanism, and its use to translate its findings from experimental settings to human translational applications. Importantly, this chapter will include some recommendation to the general studies in the area of neuroproteomics and the need to move from this field from being a descriptive, hypothesis-free approach to being an independent mature scientific discipline.

摘要

2003年的人类基因组计划已完成了约99%的人类基因组的完整测序,为人类蛋白质组计划(HPP)铺平了道路,该计划旨在全面描绘20300个蛋白质编码基因的翻译蛋白质图谱。因此,蛋白质组学领域的兴起已成功地成为蛋白质组表征的首选方法。蛋白质组学是一个用于涵盖多学科方法的术语,它结合了不同技术,旨在研究特定生理条件下蛋白质变化的全貌。蛋白质组学研究在不同领域都取得了出色成果,其中包括神经科学;然而,神经系统的复杂性催生了蛋白质组学的一个新分支,即“神经蛋白质组学”。神经蛋白质组学研究涉及评估神经系统成分的定量和定性方面,包括各种与脑相关疾病(从神经精神疾病、退行性疾病、精神疾病,最重要的是与脑特异性神经创伤相关的损伤)背后的全局动态事件。在本章引言中,我们将简要介绍神经蛋白质组学领域的历史背景。在此过程中,我们将重点介绍神经蛋白质组学在神经创伤领域的最新应用,该领域在生物标志物研究、时空损伤机制以及将研究结果从实验环境转化为人类转化应用方面受益于神经蛋白质组学。重要的是,本章将对神经蛋白质组学领域的一般研究提出一些建议,并指出需要将该领域从一种描述性的、无假设的方法转变为一门独立成熟的科学学科。

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