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首页> 外文期刊>The Biochemical Journal >Cloning, expression in Escherichia coli and characterization of the recombinant Neu5Ac alpha 2,6Gal beta 1,4GlcNAc-specific high-affinity lectin and its mutants from the mushroom Polyporus squamosus
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Cloning, expression in Escherichia coli and characterization of the recombinant Neu5Ac alpha 2,6Gal beta 1,4GlcNAc-specific high-affinity lectin and its mutants from the mushroom Polyporus squamosus

机译:大肠杆菌多孔菌的重组Neu5Acα2,6Gal beta 1,4GlcNAc特异高亲和力凝集素及其突变体的克隆,在大肠杆菌中的表达和表征

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Lectin from the mushroom Polyporus squamosus (PSL) has a unique carbohydrate-binding specificity for sialylated glycoconjugates containing Neu5Acalpha2,6Galbeta1,4Glc/GlcNAc trisaccharide sequences of asparagine-linked glycoproteins. In the present study, we elucidate the molecular basis for its binding specificity as well as establish a consistent source of this useful lectin using a bacterial expression system. cDNA cloning revealed that PSL contains a ricin B chain-like (QXW)(3) domain at its N-terminus that is composed of three homologous subdomains (alpha, beta and gamma). A recombinant lectin was expressed in Escherichia coli as a fully active, soluble form. It agglutinated rabbit erythrocytes and showed the highest affinity for Neu5Acalpha2,6Galbeta1,4GlcNAc, but not for the sialyl alpha2,3-linked isomer. We also investigated the structure-function relationship of PSL. A monomeric C-terminal deletion mutant lacking 40% of the lectin's molecular mass retained sugar-binding activity, indicating that the carbohydrate-binding sites are situated in the N-terminal portion of the lectin, whereas the C-terminal portion probably functions in oligomerization and structural stabilization. Mutant constructs that have single amino acid substitutions in the putative sugar-binding sites, based on sequence alignment with the ricin B-chain, indicate that the beta and gamma subdomains are most probably sugar-binding sites. The recombinantly expressed lectin will be a valuable reagent for the detection of the Neu5Acalpha2,6Galbeta1,4GlcNAc sequence of asparagine-linked glycans.
机译:蘑菇多孔猪(PSL)的凝集素对唾液酸化糖缀合物具有独特的碳水化合物结合特异性,该缀合物包含天冬酰胺连接的糖蛋白的Neu5Acalpha2,6Galbeta1,4Glc / GlcNAc三糖序列。在本研究中,我们阐明了其结合特异性的分子基础,并使用细菌表达系统建立了这种有用的凝集素的一致来源。 cDNA克隆显示,PSL在其N端包含一个蓖麻蛋白B链状(QXW)(3)域,该域由三个同源子域(α,β和γ)组成。重组凝集素在大肠杆菌中以完全活性的可溶形式表达。它凝集了兔红细胞,并显示出对Neu5Acalpha2,6Galbeta1,4GlcNAc的最高亲和力,但对与唾液酸α2,3连接的异构体却没有。我们还研究了PSL的结构-功能关系。缺乏凝集素分子量的40%的单体C端缺失突变体保留了糖结合活性,表明碳水化合物结合位点位于凝集素的N端部分,而C端部分可能在寡聚中起作用和结构稳定。基于与蓖麻蛋白B链的序列比对,在假定的糖结合位点具有单个氨基酸取代的突变体构建体表明,β和γ亚结构域最可能是糖结合位点。重组表达的凝集​​素将是检测天冬酰胺连接聚糖的Neu5Acalpha2,6Galbeta1,4GlcNAc序列的有价值的试剂。

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