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In vitro assembly of the undecaprenylpyrophosphate-linked heptasaccharide for prokaryotic N-linked glycosylation

机译:十一碳烯基焦磷酸连接的七糖的体外组装用于原核N连接的糖基化

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摘要

Campylobacter jejuni has a general N-linked glycosylation pathway (encoded by the pgl gene cluster), which culminates in the transfer of a heptasaccharide: GalNAc-α1,4-GalNAc-α1,4-(Glcβ1,3)-GalNAc-α1,4-GalNAc-α1,4-GalNAc-α1,3-Bac [where Bac is bacillosamine (2,4-diacetamido-2,4,6-trideoxyglucose)] from a membrane-anchored undecaprenylpyrophosphate (Und-PP)-linked donor to the asparagine side chain of proteins at the Asn-X-Ser/Thr motif. Herein we report, the cloning, overexpression, and purification of four of the glycosyltransferases (PglA, PglH, PglI, and PglJ) responsible for the biosynthesis of the Und-PP-linked heptasaccharide. Starting with chemically synthesized Und-PP-linked Bac and various combinations of enzymes, we have deduced the precise functions of these glycosyltransferases. PglA and PglJ add the first two GalNAc residues on to the isoprenoid-linked Bac carrier, respectively. Elongation of the trisaccharide with PglH results in a hexasaccharide revealing the polymerase activity of PglH. The final branching glucose is then added by PglI, which prefers native lipids for optimal activity. The sequential activities of the glycosyl transferases in the pathway can be reconstituted in vitro. This pathway represents an ideal venue for investigating the integrated functions of a series of enzymatic processes that occur at a membrane interface.
机译:空肠弯曲菌具有一般的N联糖基化途径(由pgl基因簇编码),最终导致七糖的转移:GalNAc-α1,4-GalNAc-α1,4-(Glcβ1,3)-GalNAc-α1, 4-GalNAc-α1,4-GalNAc-α1,3-Bac[其中Bac是杆菌胺(2,4-二乙酰氨基-2,4,6-三苯氧基葡萄糖)]从膜固定的十一碳烯基焦磷酸酯(Und-PP)连接的供体在Asn-X-Ser / Thr基序的蛋白质的天冬酰胺侧链上连接。在本文中,我们报道了负责Und-PP连接的七糖的生物合成的四个糖基转移酶(PglA,PglH,PglI和PglJ)的克隆,过表达和纯化。从化学合成的Und-PP连接的Bac和酶的各种组合开始,我们推论了这些糖基转移酶的精确功能。 PglA和PglJ分别将前两个GalNAc残基添加到类异戊二烯连接的Bac载体上。用PglH延伸三糖会产生六糖,显示出PglH的聚合酶活性。然后通过PglI添加最终的分支葡萄糖,PglI优选天然脂质以获得最佳活性。糖基转移酶在该途径中的顺序活性可以在体外重建。该途径是研究膜界面处发生的一系列酶促过程的整合功能的理想场所。

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