Laboratory of Peptide Research and Development, School of Pharmacy, Faculty of Medical Sciences, The University of the West Indies, St. Augustine, Trinidad and Tobago.
Department of Pharmaceutical Sciences, School of Pharmacy, University of Puerto Rico, Medical Sciences Campus, San Juan, Puerto Rico, USA.
Arch Pharm (Weinheim). 2021 Aug;354(8):e2100034. doi: 10.1002/ardp.202100034. Epub 2021 Apr 29.
Among peptide-based drugs, naturally occurring bicyclic compounds have been established as molecules with unique therapeutic potential. The diverse pharmacological activities associated with bicyclic peptides from marine tunicates, sponges, and bacteria render them suitable to be employed as effective surrogate between complex and small therapeutic moieties. Bicyclic peptides possess greater conformational rigidity and higher metabolic stability as compared with linear and monocyclic peptides. The antibody-like affinity and specificity of bicyclic peptides enable their binding to the challenging drug targets. Bridged macrobicyclic peptides from natural marine resources represent an underexplored class of molecules that provides promising platforms for drug development owing to their biocompatibility, similarity, and chemical diversity to proteins. The present review explores major marine-derived bicyclic peptides including disulfide-bridged, histidinotyrosine-bridged, or histidinoalanine-bridged macrobicyclic peptides along with their structural characteristics, synthesis, structure-activity relationship, and bioproperties.The comparison of these macrobicyclic congeners with linear/monocyclic peptides along with their therapeutic potential are also briefly discussed.
在基于肽的药物中,天然存在的双环化合物已被确定为具有独特治疗潜力的分子。来自海洋被囊动物、海绵和细菌的双环肽具有多种多样的药理学活性,可作为复杂和小的治疗部分之间的有效替代物。与线性和单环肽相比,双环肽具有更大的构象刚性和更高的代谢稳定性。双环肽具有类似抗体的亲和力和特异性,使其能够与具有挑战性的药物靶点结合。来自天然海洋资源的桥连大环双环肽是一类尚未充分探索的分子,由于其生物相容性、与蛋白质的相似性和化学多样性,为药物开发提供了有希望的平台。本综述探讨了主要的海洋衍生双环肽,包括二硫键桥连、组氨酰酪氨酸桥连或组氨酰丙氨酸桥连的大环双环肽,以及它们的结构特征、合成、构效关系和生物特性。还简要讨论了这些大环同系物与线性/单环肽的比较及其治疗潜力。