首页> 外文期刊>The Journal of biological chemistry >Eukaryotic N-Glycosylation Occurs via the Membrane-anchored C-terminal Domain of the Stt3p Subunit of Oligosaccharyltransferase
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Eukaryotic N-Glycosylation Occurs via the Membrane-anchored C-terminal Domain of the Stt3p Subunit of Oligosaccharyltransferase

机译:通过寡核糖酰基转移酶的STT3P亚基的膜锚定的C-末端结构域发生真核N-糖基化

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摘要

N-Glycosylation is an essential and highly conserved protein modification. In eukaryotes, it is catalyzed by a multisubunit membrane-associated enzyme, oligosaccharyltransferase (OT). We report the high resolution structure of the C-terminal domain of eukaryotic Stt3p. Unlike its soluble β-sheet-rich prokaryotic counterparts, our model reveals that the C-terminal domain of yeast Stt3p is highly helical and has an overall oblate spheroid-shaped structure containing a membrane-embedded region. Anchoring of this protein segment to the endoplasmic reticulum membrane is likely to bring the membrane-embedded donor substrate closer, thus facilitating glycosylation efficiency. Structural comparison of the region near the WWDYG signature motif revealed that the acceptor substrate-binding site of yeast OT strikingly resembles its prokaryotic counterparts, suggesting a conserved mechanism of N-glycosylation from prokaryotes to eukaryotes. Furthermore, comparison of the NMR and cryo-EM structures of yeast OT revealed that the molecular architecture of this acceptor substrate-recognizing domain has interesting spatial specificity for interactions with other essential OT subunits.
机译:N-糖基化是一种必要和高度保守的蛋白质修饰。在真核生物中,它催化由多管膜相关酶,少孢子酰基转移酶(OT)催化。我们报告了真核STT3P的C末端域的高分辨率结构。与其可溶性β-片状的原核相等不同,我们的模型表明,酵母STT3P的C末端结构域是高螺旋螺旋状的,并且具有含有膜嵌入区域的整体扁平球形结构。将该蛋白质段的锚固锚固到内质网膜可能使膜包埋的供体基质更靠近,因此促进糖基化效率。 WWDYG签名基质附近区域的结构比较显示,酵母OT的受体底物结合位点惊醒地类似于其原核相等,这表明从原核生物到真核生物的N-糖基化的保守机制。此外,酵母OT的NMR和冷冻胚胎结构的比较显示,该受体底物识别结构域的分子结构具有有趣的空间特异性,用于与其他必需的OT亚基相互作用。

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