Silberstein S, Collins P G, Kelleher D J, Gilmore R
Department of Biochemistry and Molecular Biology, University of Massachusetts Medical School, Worcester 01655-0103, USA.
J Cell Biol. 1995 Oct;131(2):371-83. doi: 10.1083/jcb.131.2.371.
Oligosaccharyltransferase catalyzes the transfer of a preassembled high mannose oligosaccharide from a dolichol-oligosaccharide donor to consensus glycosylation acceptor sites in newly synthesized proteins in the lumen of the rough endoplasmic reticulum. The Saccharomyces cerevisiae oligosaccharyltransferase is an oligomeric complex composed of six non-identical subunits (alpha-zeta). The alpha, beta, gamma, and delta subunits of the oligosaccharyltransferase are encoded by the OST1, WBP1, OST3, and SWP1 genes, respectively. Here we describe the functional characterization of the OST2 gene that encodes the epsilon-subunit of the oligosaccharyltransferase. Genomic disruption of the OST2 locus was lethal in haploid yeast showing that expression of the Ost2 protein is essential for viability. Overexpression of the Ost2 protein suppresses the temperature-sensitive phenotype of the wbp1-2 allele and increases in vivo and in vitro oligosaccharyltransferase activity in a wbp1-2 strain. An analysis of a series of conditional ost2 mutants demonstrated that defects in the Ost2 protein cause pleiotropic underglycosylation of soluble and membrane-bound glycoproteins. Microsomal membranes isolated from ost2 mutant yeast show marked reductions in the in vitro transfer of high mannose oligosaccharide from exogenous lipid-linked oligosaccharide to a glycosylation site acceptor tripeptide. Surprisingly, the Ost2 protein was found to be 40% identical to the DAD1 protein (defender against apoptotic cell death), a highly conserved protein initially identified in vertebrate organisms. The protein sequence of ost2 mutant alleles revealed mutations at highly conserved residues in the Ost2p/DAD1 protein sequence.
寡糖基转移酶催化将预先组装好的高甘露糖寡糖从多萜醇 - 寡糖供体转移至糙面内质网腔中新合成蛋白质的共有糖基化受体位点。酿酒酵母寡糖基转移酶是一种由六个不同亚基(α - ζ)组成的寡聚复合物。寡糖基转移酶的α、β、γ和δ亚基分别由OST1、WBP1、OST3和SWP1基因编码。在此,我们描述了编码寡糖基转移酶ε亚基的OST2基因的功能特征。OST2基因座的基因组破坏在单倍体酵母中是致死性的,表明Ost2蛋白的表达对于生存力至关重要。Ost2蛋白的过表达抑制了wbp1 - 2等位基因的温度敏感表型,并增加了wbp1 - 2菌株体内和体外的寡糖基转移酶活性。对一系列条件性ost2突变体的分析表明,Ost2蛋白的缺陷导致可溶性和膜结合糖蛋白的多效性糖基化不足。从ost2突变酵母中分离的微粒体膜显示,从外源脂质连接寡糖到糖基化位点受体三肽的高甘露糖寡糖的体外转移显著减少。令人惊讶的是,发现Ost2蛋白与DAD1蛋白(抗凋亡细胞死亡蛋白)有40%的同源性,DAD1蛋白是最初在脊椎动物中鉴定出的一种高度保守的蛋白。ost2突变等位基因的蛋白质序列揭示了Ost2p/DAD1蛋白序列中高度保守残基处的突变。