首页> 美国卫生研究院文献>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:真核生物N-糖基化通过寡糖基转移酶的Stt3p亚基的膜锚定的C末端域发生。

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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-糖基化是必要且高度保守的蛋白质修饰。在真核生物中,它是由多亚基膜相关酶寡糖基转移酶(OT)催化的。我们报告了真核生物Stt3p C末端域的高分辨率结构。不像其可溶性丰富的富含β-折叠的原核生物对应物,我们的模型揭示了酵母Stt3p的C末端结构域是高度螺旋形的,并具有包含膜嵌入区域的整体扁球形形状。将该蛋白区段锚定至内质网膜可能使膜嵌入的供体底物更近,从而促进糖基化效率。 WWDYG标记基序附近区域的结构比较表明,酵母OT的受体底物结合位点非常类似于其原核对应物,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cryo-EM结构的比较显示,该受体底物识别域的分子结构具有与其他基本OT亚基相互作用的有趣的空间特异性。

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