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Structural context for protein N-glycosylation in bacteria: The structure of PEB3, an adhesin from Campylobacter jejuni.

机译:细菌中蛋白质N-糖基化的结构背景:空肠弯曲杆菌粘附蛋白PEB3的结构。

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摘要

Campylobacter jejuni is unusual among bacteria in possessing a eukaryotic-like system for N-linked protein glycosylation at Asn residues in sequons of the type Asp/Glu-Xaa-Asn-Xaa-Ser/Thr. However, little is known about the structural context of the glycosylated sequons, limiting the design of novel recombinant glycoproteins. To obtain more information on sequon structure, we have determined the crystal structure of the PEB3 (Cj0289c) dimer. PEB3 has the class II periplasmic-binding protein fold, with each monomer having two domains with a ligand-binding site containing citrate located between them, and overall resembles molybdate- and sulfate-binding proteins. The sequon around Asn90 is located within a surface-exposed loop joining two structural elements. The three key residues are well exposed on the surface; hence, they may be accessible to the PglB oligosaccharyltransferase in the folded state.
机译:空肠弯曲杆菌在细菌中是不常见的,因为它具有真核样系统,可在Asp / Glu-Xaa-Asn-Xaa-Ser / Thr类型的序列的Asn残基处进行N联蛋白糖基化。然而,关于糖基化的序列的结构背景知之甚少,从而限制了新型重组糖蛋白的设计。为了获得有关后代结构的更多信息,我们确定了PEB3(Cj0289c)二聚体的晶体结构。 PEB3具有II类周质结合蛋白折叠,每个单体具有两个结构域,两个结构域之间具有包含柠檬酸盐的配体结合位点,并且总体上类似于钼酸盐和硫酸盐结合蛋白。 Asn90周围的序列位于连接两个结构元件的表面暴露的环内。三个关键残留物在表面上暴露得很好。因此,折叠状态的PglB寡糖基转移酶可能会接近它们。

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