Diaz S, Varki A
University of California San Diego, La Jolla, California, USA.
Curr Protoc Mol Biol. 2001 May;Chapter 17:Unit17.4. doi: 10.1002/0471142727.mb1704s26.
This unit describes metabolic labeling techniques that provide specific information about the structure, sequence, and distribution of the sugar chains of glycoconjugates. Although these techniques provide less information than complete sequencing of the sugar chains, the partial structural information derived is sufficient for many purposes. In the basic procedure presented in this unit, actively growing cell cultures are grown through several population doublings in complete medium supplemented with radiolabeled glycoconjugate precursors to reach a steady-state level of incorporation. In alternate protocols, cells are cultured for a short period of time in a deficient medium that contains a high concentration of radiolabeled precursor. A pulse or pulse-chase labeling procedure can be used to analyze precursor-product relationships. With sequential pulse-labeling, it is possible to obtain quantities of labeled glycoconjugates with the use of a minimal amount of labeled precursor by using the same medium to pulse-label a series of cultures. A support protocol describes the preparation of multiply deficient medium (MDM) for use in making appropriate deficient media.
本单元介绍了代谢标记技术,这些技术可提供有关糖缀合物糖链的结构、序列和分布的特定信息。尽管这些技术提供的信息不如糖链的完整测序多,但所获得的部分结构信息足以满足许多目的。在本单元介绍的基本程序中,在补充有放射性标记糖缀合物前体的完全培养基中,使活跃生长的细胞培养物经过几次群体倍增生长,以达到稳定的掺入水平。在替代方案中,将细胞在含有高浓度放射性标记前体的缺陷培养基中培养短时间。脉冲或脉冲追踪标记程序可用于分析前体-产物关系。通过连续脉冲标记,使用相同的培养基对一系列培养物进行脉冲标记,有可能用最少的标记前体获得大量标记糖缀合物。一个支持方案描述了用于制备适当缺陷培养基的多重缺陷培养基(MDM)的制备方法。