Murrell Michael P, Yarema Kevin J, Levchenko Andre
Department of Biomedical Engineering, Johns Hopkins University, 3400 N. Charles Street, Baltimore, MD 21218, USA.
Chembiochem. 2004 Oct 4;5(10):1334-47. doi: 10.1002/cbic.200400143.
Glycosylation can have a profound influence on the function of a variety of eukaryotic cells. In particular, it can affect signal transduction and cell-cell communication properties and thus shape critical cell decisions, including the regulation of differentiation and apoptosis. Regulation of glycosylation has multiple layers of complexity, both structural and functional, which make its experimental and theoretical analysis difficult to perform and interpret. Novel research methodologies provided by systems biology can help to address many outstanding issues and integrate glycosylation with other metabolic and cell regulation processes. Here we review the toolbox available for biochemical systems analysis of glycosylation.
糖基化可对多种真核细胞的功能产生深远影响。特别是,它可影响信号转导和细胞间通讯特性,从而决定关键的细胞决策,包括分化和凋亡的调节。糖基化的调控在结构和功能上具有多层次的复杂性,这使得对其进行实验分析和理论解释都很困难。系统生物学提供的新型研究方法有助于解决许多突出问题,并将糖基化与其他代谢和细胞调节过程整合起来。在此,我们综述了可用于糖基化生物化学系统分析的工具箱。