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Peptide Mimetics of Terminal Sugars of Complex Glycans

机译:复杂聚糖末端糖的肽模拟物

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In this project we asked whether short peptides would mimic complex carbohydrate structures and express biological activity. Amino acid sequences were identified as potential glycan mimetics by molecular modeling of docking to binding sites of lectins. The sequence HPSLK was synthesized as a quadravalent structure from a tri-lysine scaffold. Solid-phase assays showed that this peptide bound strongly to lectins from Triticus vulgaris (wheat germ agglutinin, WGA) and Dolichos biflorus (DB), which bind monosaccharides, and to lectins from Sambucus nigra (SNA1) and Maackia amurensis (MAA), which are specific for oligosaccha- rides with terminal 5-acetylneuraminic acid-galactose sequences. Further modeling led to synthesis of a longer peptide, NPSHPSLG, along with a variant, NPSHPLSG, as quadravalent structures. The longer peptides bound weakly, if at all, to WGA and DB but bound strongly to SNA1 and MAA. Mucin inhibited binding of HPSLK to WGA and DB, while fetuin inhibited binding of NPSHPSLG and NPSHPLSG to SNA1 and MAA. These results suggest that the peptides interact with the lectins at glycan-binding sites. When tested for biological activity, the peptides stimulated internalization of opsonized microspheres, which was blocked by wortmannin, an inhibitor of phagocytosis. Whereas HPSLK stimulated phosphorylation of the signaling proteins STAT2 and STAT6, NPSHPSLG and NPSHPLSG stimulated phosphorylation of STAT6, a marker for the alternative activation of phagocytosis, more strongly than STAT2. Our results suggest that these synthetic peptides may be useful as biological response modifiers.
机译:在这个项目中,我们问短肽是否会模仿复杂的碳水化合物结构并表达生物学活性。通过对凝集素结合位点的分子模型对氨基酸序列鉴定为潜在的聚糖模拟物。序列HPSLK由三赖氨酸支架合成为四价结构。固相分析表明,该肽与小麦的凝集素(小麦胚芽凝集素,WGA)和Dolichos biflorus(DB)牢固结合,后者与单糖结合,并与黑接骨木(SNA1)和黑松(Maackia amurensis,MAA)的凝集素牢固结合特异于末端为5-乙酰神经氨酸半乳糖序列的寡糖。进一步的建模导致更长的肽NPSHPSLG以及变体NPSHPLSG的四价结构合成。较长的肽与WGA和DB弱结合(如果有的话),而与SNA1和MAA牢固结合。粘蛋白抑制HPSLK与WGA和DB的结合,而胎球蛋白抑制NPSHPSLG和NPSHPLSG与SNA1和MAA的结合。这些结果表明,该肽与凝集素在聚糖结合位点相互作用。当测试其生物活性时,这些肽刺激了调理过的微球的内在化,而后者被吞噬作用的抑制剂渥曼青霉素所阻断。 HPSLK刺激信号蛋白STAT2和STAT6的磷酸化,而NPSHPSLG和NPSHPLSG刺激STAT6的磷酸化,STAT6是吞噬作用的替代激活标记,比STAT2更强烈。我们的结果表明,这些合成肽可用作生物反应修饰剂。

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