3B's Research Group, I3Bs Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, 4805-017 Barco, Portugal.
ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.
J Am Chem Soc. 2021 Dec 1;143(47):19703-19710. doi: 10.1021/jacs.1c07592. Epub 2021 Nov 19.
We report on the supramolecular self-assembly of tripeptides and their -glycosylated analogues, in which the carbohydrate moiety is coupled to a central serine or threonine flanked by phenylalanine residues. The substitution of serine with threonine introduces differential side-chain interactions, which results in the formation of aggregates with different morphology. -glycosylation decreases the aggregation propensity because of rebalancing of the π interactions. The glycopeptides form aggregates with reduced stiffness but increased thermal stability. Our results demonstrate that the designed minimalistic glycopeptides retain critical functional features of glycoproteins and therefore are promising tools for elucidation of molecular mechanisms involved in the glycoprotein interactome. They can also serve as an inspiration for the design of functional glycopeptide-based biomaterials.
我们报告了三肽及其 - 糖基类似物的超分子自组装,其中碳水化合物部分与中央丝氨酸或苏氨酸连接,两侧为苯丙氨酸残基。用苏氨酸替代丝氨酸会引入不同的侧链相互作用,从而导致形成具有不同形态的聚集体。 - 糖基化由于π 相互作用的再平衡而降低了聚集倾向。糖肽形成的聚集体刚性降低,但热稳定性增加。我们的结果表明,设计的简约糖肽保留了糖蛋白的关键功能特征,因此是阐明糖蛋白相互作用组中涉及的分子机制的有前途的工具。它们也可以作为设计基于功能性糖肽的生物材料的灵感来源。