首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Specific transbilayer translocation of dolichol-linked oligosaccharides by an endoplasmic reticulum flippase
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Specific transbilayer translocation of dolichol-linked oligosaccharides by an endoplasmic reticulum flippase

机译:内质网flippase特异性连接双链连接寡糖的双分子层易位

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摘要

The oligosaccharide donor for protein N-glycosylation, Glc3Man9GlcNAc2-PP-dolichol, is synthesized via a multistep pathway that starts on the cytoplasmic face of the endoplasmic reticulum (ER) and ends in the lumen where the glycosylation reaction occurs. This necessitates transbilayer translocation or flipping of the lipid intermediate Man5GlcNAc2-PP-dolichol (M5-DLO) across the ER membrane. The mechanism by which M5-DLO—or any other lipid—is flipped across the ER is unknown, except that specific transport proteins or flippases are required. We recently demonstrated M5-DLO flipping activity in proteoliposomes reconstituted from detergent-solubilized ER membrane proteins and showed that it was ATP-independent and required a trypsin-sensitive protein that sedimented at approximately 4S. By using an activity-enriched fraction devoid of glycerophospholipid flippase activity, we now report that M5-DLO is rapidly flipped in the reconstituted system with a time constant τ <2 min, whereas its triantennary structural isomer is flipped slowly with τ >200 min. DLOs larger than M5-DLO are also poorly translocated, with τ ranging from approximately 10 min to >200 min. We conclude that (i) the number and arrangement of mannoses in the DLO glycan has a profound effect on the ability of the DLO to be translocated by the flippase, (ii) glycan size per se does not dictate whether a DLO will be flipped, and (iii) the flippase is highly specific for M5-DLO. Our results suggest a simple structural model for the interaction between the DLO head group and the flippase.
机译:蛋白质N-糖基化的寡糖供体Glc3Man9GlcNAc2-PP-二羟酚是通过多步途径合成的,该途径始于内质网(ER)的细胞质表面,终止于发生糖基化反应的内腔。这就需要脂质中间产物Man5GlcNAc2-PP-dolichol(M5-DLO)跨ER膜进行双层转移或翻转。 M5-DLO或任何其他脂质在ER上翻转的机制尚不清楚,除了需要特定的转运蛋白或翻转酶。我们最近展示了由洗涤剂溶解的ER膜蛋白重构的蛋白脂质体中的M5-DLO翻转活性,并表明它是非ATP依赖性的,需要胰蛋白酶敏感的蛋白在约4S时沉淀。通过使用没有甘油磷脂翻转酶活性的富含活性的级分,我们现在报道M5-DLO在重构的系统中快速翻转,时间常数τ<2 min,而其三天线结构异构体在τ> 200 min时缓慢翻转。大于M5-DLO的DLO的易位性也很差,其τ范围约为10分钟至> 200分钟。我们得出的结论是:(i)DLO聚糖中甘露糖的数量和排列方式对DLO可以通过flippase进行移位的能力产生深远的影响,(ii)聚糖的大小本身并不决定DLO是否会被翻转, (iii)脂肪酶对M5-DLO具有高度特异性。我们的结果提出了DLO头基和flippase之间相互作用的简单结构模型。

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