Schulz Benjamin L, Aebi Markus
Institute of Microbiology, Department of Biology, Eidgenössische Technische Hochschule (ETH) Zurich, Zurich, Switzerland.
Mol Cell Proteomics. 2009 Feb;8(2):357-64. doi: 10.1074/mcp.M800219-MCP200. Epub 2008 Oct 14.
Asparagine-linked glycosylation is the most common post-translational modification of proteins catalyzed in eukaryotes by the multiprotein complex oligosaccharyltransferase. Apart from the catalytic Stt3p, the roles of the subunits are ill defined. Here we describe functional investigations of the Ost3/6p components of the yeast enzyme. We developed novel analytical tools to quantify glycosylation site occupancy by enriching glycoproteins bound to the yeast polysaccharide cell wall, tagging glycosylated asparagines using endoglycosidase H glycan release, and detecting peptides and glycopeptides with LC-ESI-MS/MS. We found that the paralogues Ost3p and Ost6p were required for efficient glycosylation of distinct defined glycosylation sites. Our results describe a novel method for relative quantification of glycosylation occupancy in the genetically tractable yeast system and show that eukaryotic oligosaccharyltransferase isoforms have different activities toward protein substrates at the level of individual glycosylation sites.
天冬酰胺连接的糖基化是真核生物中由多蛋白复合物寡糖基转移酶催化的最常见的蛋白质翻译后修饰。除了催化亚基Stt3p外,其他亚基的功能尚不清楚。在此,我们描述了酵母酶Ost3/6p组分的功能研究。我们开发了新的分析工具,通过富集与酵母多糖细胞壁结合的糖蛋白、使用内切糖苷酶H释放聚糖标记糖基化的天冬酰胺以及用LC-ESI-MS/MS检测肽和糖肽来定量糖基化位点占有率。我们发现,旁系同源物Ost3p和Ost6p是不同的特定糖基化位点高效糖基化所必需的。我们的结果描述了一种在遗传易处理的酵母系统中相对定量糖基化占有率的新方法,并表明真核生物寡糖基转移酶同工型在单个糖基化位点水平上对蛋白质底物具有不同的活性。