糖基化
天冬酰胺
空肠弯曲杆菌
周质间隙
生物化学
内质网
N-连接糖基化
化学
酵母
酿酒酵母
细胞生物学
细菌
生物
糖蛋白
大肠杆菌
聚糖
氨基酸
基因
遗传学
作者
Eranthie Weerapana,Barbara Imperiali
出处
期刊:Glycobiology
[Oxford University Press]
日期:2006-03-01
卷期号:16 (6): 91R-101R
被引量:345
标识
DOI:10.1093/glycob/cwj099
摘要
Asparagine-linked protein glycosylation is a prevalent protein modification reaction in eukaryotic systems. This process involves the co-translational transfer of a pre-assembled tetradecasaccharide from a dolichyl-pyrophosphate donor to the asparagine side chain of nascent proteins at the endoplasmic reticulum (ER) membrane. Recently, the first such system of N-linked glycosylation was discovered in the Gram-negative bacterium, Campylobacter jejuni. Glycosylation in this organism involves the transfer of a heptasaccharide from an undecaprenyl-pyrophosphate donor to the asparagine side chain of proteins at the bacterial periplasmic membrane. Here we provide a detailed comparison of the machinery involved in the N-linked glycosylation systems of eukaryotic organisms, exemplified by the yeast Saccharomyces cerevisiae, with that of the bacterial system in C. jejuni. The two systems display significant similarities and the relative simplicity of the bacterial glycosylation process could provide a model system that can be used to decipher the complex eukaryotic glycosylation machinery.
科研通智能强力驱动
Strongly Powered by AbleSci AI