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首页> 外文期刊>The Biochemical Journal >Transmembrane folding of the human erythrocyte anion exchanger (AE1, Band 3) determined by scanning and insertional N-glycosylation mutagenesis.
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Transmembrane folding of the human erythrocyte anion exchanger (AE1, Band 3) determined by scanning and insertional N-glycosylation mutagenesis.

机译:通过扫描和插入N-糖基化诱变确定人红细胞阴离子交换剂(AE1,波段3)的跨膜折叠。

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摘要

The human erythrocyte anion exchanger (AE1, Band 3) contains up to 14 transmembrane segments, with a single site of N-glycosylation at Asn642 in extracellular (EC) loop 4. Scanning and insertional N-glycosylation mutagenesis were used to determine the folding pattern of AE1 in the membrane. Full-length AE1, when expressed in transfected human embryonic kidney (HEK)-293 or COS-7 cells, retained a high-mannose oligosaccharide structure. Scanning N-glycosylation mutagenesis of EC loop 4 showed that N-glycosylation acceptor sites (Asn-Xaa-Ser/Thr) spaced 12 residues from the ends of adjacent transmembrane segments could be N-glycosylated. An acceptor site introduced at position 743 in intracellular (IC) loop 5 that could be N-glycosylated in a cell-free translation system was not N-glycosylated in transfected cells. Mutations designed to disrupt the folding of this loop enhanced the level of N-glycosylation at Asn743 in vitro. The results suggest that this loop might be transiently exposed to the lumen of the endoplasmic reticulum during biosynthesis but normally folds rapidly, precluding N-glycosylation. EC loop 4 insertions into positions 428, 484, 754 and 854 in EC loops 1, 2, 6 and 7 respectively were efficiently N-glycosylated, showing that these regions were extracellular. EC loop 4 insertions into positions 731 or 785 were poorly N-glycosylated, which was inconsistent with an extracellular disposition for these regions of AE1. Insertion of EC loop 4 into positions 599 and 820 in IC loops 3 and 6 respectively were not N-glycosylated in cells, which was consistent with a cytosolic disposition for these loops. Inhibitor-affinity chromatography with 4-acetamido-4'-isothiocyanostilbene-2,2'-disulphonate (SITS)-Affi-Gel was used to assess whether the AE1 mutants were in a native state. Mutants with insertions at positions 428, 484, 599, 731 and 785 showed impaired inhibitor binding, whereas insertions at positions 754, 820 and 854 retained binding. The results indicate that the folding of the C-terminal region of AE1 is more complex than originally proposed and that this region of the transporter might have a dynamic aspect.
机译:人红细胞阴离子交换剂(AE1,带3)最多包含14个跨膜片段,在细胞外(EC)环4的Asn642处具有一个N-糖基化位点。使用扫描和插入N-糖基化诱变来确定折叠模式膜中的AE1。全长AE1在转染的人类胚胎肾(HEK)-293或COS-7细胞中表达时,保留了高甘露糖寡糖结构。扫描EC回路4的N-糖基化诱变表明,N-糖基化受体位点(Asn-Xaa-Ser / Thr)与相邻跨膜片段末端间隔12个残基可以被N-糖基化。在无细胞翻译系统中可以被N-糖基化的细胞内(IC)环5中的743位引入的受体位点在转染的细胞中未被N-糖基化。设计用于破坏该环折叠的突变可增强体外Asn743的N-糖基化水平。结果表明,该环在生物合成过程中可能会短暂暴露于内质网腔,但通常会迅速折叠,从而阻止N-糖基化。 EC环4分别插入EC环1、2、6和7中位置428、484、754和854的位置被有效地N-糖基化,表明这些区域在细胞外。 EC环4插入位置731或785的N-糖基化差,这与AE1的这些区域的细胞外配置不一致。 EC环4分别插入IC环3和6中599和820位的插入在细胞中没有被N-糖基化,这与这些环的胞质配置是一致的。使用4-乙酰氨基-4'-异硫氰酸根合-2,2'-二磺酸盐(SITS)-Affi-Gel的抑制剂亲和色谱法评估AE1突变体是否处于天然状态。在428、484、599、731和785位插入的突变体显示抑制剂结合受损,而在754、820和854位插入的结合保持结合。结果表明AE1的C端区域的折叠比最初提出的要复杂,并且转运蛋白的这一区域可能具有动态方面。

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