...
首页> 外文期刊>The Biochemical Journal >Carbohydrate specificity of an insecticidal lectin isolated from the leaves of Glechoma hederacea (ground ivy) towards mammalian glycoconjugates.
【24h】

Carbohydrate specificity of an insecticidal lectin isolated from the leaves of Glechoma hederacea (ground ivy) towards mammalian glycoconjugates.

机译:从Heleracea(地面常春藤)的叶子分离的杀虫凝集素对哺乳动物糖缀合物的碳水化合物特异性。

获取原文
获取原文并翻译 | 示例
           

摘要

Preliminary studies indicated that the potent insecticidal lectin, Gleheda, from the leaves of Glechoma hederacea (ground ivy) preferentially agglutinates human erythrocytes carrying the Tn (GalNAcalpha1-Ser/Thr) antigen. However, no details have been reported yet with respect to the fine specificity of the lectin. To corroborate the molecular basis of the insecticidal activity and physiological function of Gleheda, it is necessary to identify the recognition factors that are involved in the Gleheda-glycotope interaction. In the present study, the requirement of high-density multivalent carbohydrate structural units for Gleheda binding and a fine-affinity profile were evaluated using ELLSA (enzyme-linked lectinosorbent assay) with our extended glycan/ligand collections, a glycan array and molecular modelling. From the results, we concluded that a high-density of exposed multivalent Tn-containing glycoproteins (natural armadillo and asialo ovine salivary glycoproteins) were the most potent factors for Gleheda binding. They were, on a nanogram basis, 6.5x10(5), 1.5x10(4) and 3.1x10(3) times more active than univalent Gal (galactose), GalNAc (N-acetylgalactosamine) and Tn respectively. Among mono- and oligo-saccharides examined, simple clustered Tn (molecular mass <3000 Da) from ovine salivary glycoprotein was the best, being 37.5 and 1.7x10(3) times better than GalNAc and Gal respectively. GalNAc glycosides were significantly more active than Gal glycosides, indicating that the N-acetamido group at C-2 plays an important role in Gleheda binding. The results of glycan array support the conclusions drawn with respect to the specificity of Gleheda based on the ELLSA assays. These findings combined with the results of the molecular modelling and docking indicate the occurrence of a primary GalNAcalpha1-binding site in the Gleheda monomer. However, the extraordinary binding feature of Gleheda for glycoproteins demonstrates the importance of affinity enhancement by high-density multivalent glycotopes in the ligand-lectin interactions in biological processes.
机译:初步研究表明,强力菊(Glechoma hederacea)叶(地春藤)的强力杀虫凝集素Gleheda优先凝集携带Tn(GalNAcalpha1-Ser / Thr)抗原的人红细胞。然而,关于凝集素的精细特异性尚未报道任何细节。为了证实格列赫达的杀虫活性和生理功能的分子基础,有必要确定参与格列赫达-糖原相互作用的识别因子。在本研究中,使用我们扩展的聚糖/配体集合,聚糖阵列和分子模型,使用ELLSA(酶联电凝集吸附剂测定法)评估了高密度多价碳水化合物结构单元对Gleheda结合和精细亲和力的要求。从结果中,我们得出结论,高密度的暴露的含多价Tn的糖蛋白(天然犰狳和唾液唾液腺唾液糖蛋白)是格列赫达结合的最有效因素。以纳克计,它们的活性分别是单价Gal(半乳糖),GalNAc(N-乙酰半乳糖胺)和Tn的6.5x10(5),1.5x10(4)和3.1x10(3)倍。在检测的单糖和寡糖中,来自绵羊唾液糖蛋白的简单簇状Tn(分子量<3000 Da)是最好的,分别比GalNAc和Gal好37.5倍和1.7x10(3)倍。 GalNAc糖苷的活性明显高于Gal糖苷,表明C-2的N-乙酰氨基在Gleheda结合中起重要作用。聚糖阵列的结果支持了基于ELLSA分析得出的关于格列赫达特异性的结论。这些发现与分子建模和对接的结果相结合,表明在Gleheda单体中存在一个主要的GalNAcalpha1结合位点。然而,Gleheda对糖蛋白的非凡结合特征证明了在生物过程中配体-凝集素相互作用中,高密度多价糖基增强亲和力的重要性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号