Seo Jawon, Lee Kong-Joo
Center for Cell Signaling Research, Division of Molecular Life Sciences and College of Pharmacy, Ewha Womans University, Seoul 120-750, Korea.
J Biochem Mol Biol. 2004 Jan 31;37(1):35-44. doi: 10.5483/bmbrep.2004.37.1.035.
Recently produced information on post-translational modifications makes it possible to interpret their biological regulation with new insights. Various protein modifications finely tune the cellular functions of each protein. Understanding the relationship between post-translational modifications and functional changes ("post-translatomics") is another enormous project, not unlike the human genome project. Proteomics, combined with separation technology and mass spectrometry, makes it possible to dissect and characterize the individual parts of post-translational modifications and provide a systemic analysis. Systemic analysis of post-translational modifications in various signaling pathways has been applied to illustrate the kinetics of modifications. Availability will advance new technologies that improve sensitivity and peptide coverage. The progress of "post-translatomics", novel analytical technologies that are rapidly emerging, offer a great potential for determining the details of the modification sites.
最近产生的关于翻译后修饰的信息使得人们能够以新的视角解读其生物学调控机制。各种蛋白质修饰能够精确调节每种蛋白质的细胞功能。理解翻译后修饰与功能变化之间的关系(“翻译后修饰组学”)是另一个庞大的项目,与人类基因组计划并无不同。蛋白质组学结合分离技术和质谱分析,使得剖析和表征翻译后修饰的各个部分并进行系统分析成为可能。对各种信号通路中翻译后修饰的系统分析已被用于阐释修饰的动力学过程。技术的可获得性将推动提高灵敏度和肽段覆盖范围的新技术发展。“翻译后修饰组学”的进展,以及迅速涌现的新型分析技术,为确定修饰位点的细节提供了巨大潜力。