Schachter H
Department of Structural Biology and Biochemistry, Research Institute, The Hospital for Sick Children, Faculty of Medicine, University of Toronto, Ont, Canada.
Glycoconj J. 2000 Jul-Sep;17(7-9):465-83. doi: 10.1023/a:1011010206774.
This review covers discoveries made over the past 30-35 years that were important to our understanding of the synthetic pathway required for initiation of the antennae or branches on complex N-glycans and O-glycans. The review deals primarily with the author's contributions but the relevant work of other laboratories is also discussed. The focus of the review is almost entirely on the glycosyltransferases involved in the process. The following topics are discussed. (1) The localization of the synthesis of complex N-glycan antennae to the Golgi apparatus. (2) The "evolutionary boundary" at the stage in N-glycan processing where there is a change from oligomannose to complex N-glycans; this switch correlates with the appearance of multicellular organisms. (3) The discovery of the three enzymes which play a key role in this switch, N-acetylglucosaminyltransferases I and II and mannosidase II. (4) The "yellow brick road" which leads from oligomannose to highly branched complex N-glycans with emphasis on the enzymes involved in the process and the factors which control the routes of synthesis. (5) A short discussion of the characteristics of the enzymes involved and of the genes that encode them. (6) The role of complex N-glycans in mammalian and Caenorhabditis elegans development. (7) The crystal structure of N-acetylglucosaminyltransferase I. (8) The discovery of the enzymes which synthesize O-glycan cores 1, 2, 3 and 4 and their elongation.
本综述涵盖了过去30至35年中取得的发现,这些发现对于我们理解复杂N-聚糖和O-聚糖上触角或分支起始所需的合成途径至关重要。该综述主要论述了作者的贡献,但也讨论了其他实验室的相关工作。综述的重点几乎完全集中在该过程中涉及的糖基转移酶。讨论了以下主题:(1)复杂N-聚糖触角合成定位于高尔基体;(2)N-聚糖加工过程中从寡甘露糖向复杂N-聚糖转变阶段的“进化边界”,这种转变与多细胞生物的出现相关;(3)发现了在这种转变中起关键作用的三种酶,即N-乙酰葡糖胺基转移酶I和II以及甘露糖苷酶II;(4)从寡甘露糖到高度分支的复杂N-聚糖的“黄砖路”,重点是该过程中涉及的酶以及控制合成途径的因素;(5)对所涉及酶及其编码基因特征的简短讨论;(6)复杂N-聚糖在哺乳动物和秀丽隐杆线虫发育中的作用;(7)N-乙酰葡糖胺基转移酶I的晶体结构;(8)合成O-聚糖核心1、2、3和4及其延伸的酶的发现。