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Asn-X-Ser/Thr序列中的羟基氨基酸可影响N-连接核心糖基化效率以及细胞表面糖蛋白的表达水平。

The hydroxy amino acid in an Asn-X-Ser/Thr sequon can influence N-linked core glycosylation efficiency and the level of expression of a cell surface glycoprotein.

作者信息

Kasturi L, Eshleman J R, Wunner W H, Shakin-Eshleman S H

机构信息

Institute of Pathology, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106, USA.

出版信息

J Biol Chem. 1995 Jun 16;270(24):14756-61. doi: 10.1074/jbc.270.24.14756.

Abstract

N-Linked glycosylation usually occurs at the sequon, Asn-X-Ser/Thr. In this sequon, the side chain of the hydroxy amino acid (Ser or Thr) may play a direct catalytic role in the enzymatic transfer of core oligosaccharides to the Asn residue. Using recombinant variants of rabies virus glycoprotein (RGP), we examined the influence of the hydroxy amino acid on core glycosylation efficiency. A variant of RGP containing a single Asn-X-Ser sequon at Asn37 was modified by site-directed mutagenesis to change the sequon to either Asn-X-Cys or Asn-X-Thr. The impact of these changes on core glycosylation efficiency was assessed by expressing the variants in a cell-free transcription/translation/glycosylation system and in transfected tissue culture cells. Substitution of Cys at position 39 blocks glycosylation, whereas substitution of Thr dramatically increases core glycosylation efficiency of Asn37 in both membrane-anchored and secreted forms of RGP. The substitution of Thr for Ser also dramatically enhances the level of expression and cell surface delivery of RGP when the sequon at Asn37 is the only sequon in the protein. Novel forms of membrane-anchored and secreted RGP which are fully glycosylated at all three sequons were also generated by substitution of Thr at position 39.

摘要

N-连接糖基化通常发生在序列Asn-X-Ser/Thr处。在这个序列中,羟基氨基酸(Ser或Thr)的侧链可能在核心寡糖向Asn残基的酶促转移中发挥直接催化作用。我们使用狂犬病病毒糖蛋白(RGP)的重组变体,研究了羟基氨基酸对核心糖基化效率的影响。通过定点诱变对在Asn37处含有单个Asn-X-Ser序列的RGP变体进行修饰,将该序列改变为Asn-X-Cys或Asn-X-Thr。通过在无细胞转录/翻译/糖基化系统以及转染的组织培养细胞中表达这些变体,评估这些变化对核心糖基化效率的影响。在第39位用Cys替代会阻断糖基化,而用Thr替代则会显著提高RGP膜锚定形式和分泌形式中Asn37的核心糖基化效率。当Asn37处的序列是蛋白质中唯一的序列时,用Thr替代Ser也会显著提高RGP的表达水平和细胞表面递送效率。通过在第39位用Thr替代,还产生了在所有三个序列处都完全糖基化的新型膜锚定形式和分泌形式的RGP。

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