LAQV-REQUIMTE, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
Molecules. 2020 Dec 28;26(1):106. doi: 10.3390/molecules26010106.
To this day, the recognition and high affinity binding of biomolecules in water by synthetic receptors remains challenging, while the necessity for systems for their sensing, transport and modulation persists. This problematic is prevalent for the recognition of peptides, which not only have key roles in many biochemical pathways, as well as having pharmacological and biotechnological applications, but also frequently serve as models for the study of proteins. Taking inspiration in nature and on the interactions that occur between several receptors and peptide sequences, many researchers have developed and applied a variety of different synthetic receptors, as is the case of macrocyclic compounds, molecular imprinted polymers, organometallic cages, among others, to bind amino acids, small peptides and proteins. In this critical review, we present and discuss selected examples of synthetic receptors for amino acids and peptides, with a greater focus on supramolecular receptors, which show great promise for the selective recognition of these biomolecules in physiological conditions. We decided to focus preferentially on small synthetic receptors (leaving out of this review high molecular weight polymeric systems) for which more detailed and accurate molecular level information regarding the main structural and thermodynamic features of the receptor biomolecule assemblies is available.
时至今日,合成受体在水中对生物分子的识别和高亲和力结合仍然具有挑战性,而对它们进行传感、传输和调节的系统的需求仍然存在。对于肽的识别来说,这个问题尤为突出,因为肽不仅在许多生化途径中具有关键作用,具有药理学和生物技术应用,而且还经常作为蛋白质研究的模型。受自然界中几种受体与肽序列相互作用的启发,许多研究人员已经开发并应用了各种不同的合成受体,如大环化合物、分子印迹聚合物、金属有机笼等,以结合氨基酸、小肽和蛋白质。在这篇评论中,我们展示并讨论了氨基酸和肽的一些选定的合成受体的例子,重点介绍超分子受体,它们在生理条件下对这些生物分子的选择性识别显示出巨大的潜力。我们决定优先关注小分子合成受体(将高分子量聚合物系统排除在本综述之外),因为对于这些受体-生物分子组装体的主要结构和热力学特征,我们可以获得更详细和准确的分子水平信息。