Departamento de Química Orgánica, Facultad de Química, Universidad de Sevilla, Apartado 553, E-41071 Sevilla, Spain.
Chem Soc Rev. 2013 Jun 7;42(11):4518-31. doi: 10.1039/c2cs35219b.
Despite efficiently imitating functional ligand presentations in terms of valency and density, most of the reported multivalent carbohydrate prototypes barely reflect the inherent heterogeneity of biological systems, therefore underestimating the potential contribution of synergistic or antagonistic effects to molecular recognition events. To address this question, the design of novel molecular and supramolecular entities displaying different saccharide motifs in a controlled manner is of critical importance. In this review we highlight the current efforts made to synthesize heteromultivalent glycosystems on different platforms (peptides, dendrimers, polymers, oligonucleotides, calixarenes, cyclodextrins, microarrays, vesicles) and to evaluate the influence of heterogeneity in carbohydrate-protein (lectin, antibody) recognition phenomena. Although the number of publications on this topic is limited as compared to the huge volume of reports on homomultivalent sugar displays, the current body of results has already unravelled the existence of new binding mechanisms that operate in heterogeneous environments whose exact biological significance remains to be unveiled.
尽管在价态和密度方面有效地模拟了功能性配体的呈现,但大多数报道的多价碳水化合物原型几乎无法反映生物系统的固有异质性,因此低估了协同或拮抗效应对分子识别事件的潜在贡献。为了解决这个问题,设计能够以可控方式展示不同糖基图案的新型分子和超分子实体至关重要。在这篇综述中,我们强调了目前在不同平台(肽、树状聚合物、聚合物、寡核苷酸、杯芳烃、环糊精、微阵列、囊泡)上合成杂多价糖体系以及评估糖基-蛋白质(凝集素、抗体)识别现象中异质性的影响所做的努力。尽管与大量报道的同多价糖展示相比,关于这个主题的出版物数量有限,但目前的研究结果已经揭示了在异质环境中起作用的新结合机制的存在,其确切的生物学意义仍有待揭示。