The State Key Laboratory of Biotherapy,West China Hospital, Sichuan University, Chengdu, People's Republic of China.
Expert Rev Proteomics. 2010 Jun;7(3):411-29. doi: 10.1586/epr.10.14.
The most significant advantage of proteomic technology is its ability to profile a whole proteome or subproteome in a single experiment, so that the protein alterations corresponding to a pathological or biochemical condition at a given time can be annotated in an integrated way. In oncology and pharmacology these technologies led to the identification of biological markers, which may provide the starting point for the identification of diagnostic markers and therapeutic targets; thus greatly broadening our knowledge and accelerating our path in medical research. In combination with other new technologies in immunology and chemistry, proteomics shows significant potential to make considerable contribution to the drug development process. This article provides a brief overview of the integrative oncoproteomics strategies for anticancer drug discovery, including comparative proteomics, signaling proteomics, membrane proteomics, immunoproteomics and chemistry-based functional proteomics.
蛋白质组学技术的最大优势在于能够在单次实验中对整个蛋白质组或亚蛋白质组进行分析,从而可以以综合的方式注释给定时间点对应病理或生化条件的蛋白质变化。在肿瘤学和药理学中,这些技术导致了生物标志物的鉴定,这可能为鉴定诊断标志物和治疗靶点提供了起点;从而极大地拓宽了我们的知识,并加速了我们在医学研究中的进程。蛋白质组学与免疫学和化学等其他新技术结合,显示出对药物开发过程做出重大贡献的巨大潜力。本文简要概述了用于抗癌药物发现的综合肿瘤蛋白质组学策略,包括比较蛋白质组学、信号转导蛋白质组学、膜蛋白质组学、免疫蛋白质组学和基于化学的功能蛋白质组学。