Siodłak Dawid
Faculty of Chemistry, University of Opole, Oleska, 48 45-052, Opole, Poland,
Amino Acids. 2015 Jan;47(1):1-17. doi: 10.1007/s00726-014-1846-4. Epub 2014 Oct 17.
α,β-Dehydroamino acids are naturally occurring non-coded amino acids, found primarily in peptides. The review focuses on the type of α,β-dehydroamino acids, the structure of dehydropeptides, the source of their origin and bioactivity. Dehydropeptides are isolated primarily from bacteria and less often from fungi, marine invertebrates or even higher plants. They reveal mainly antibiotic, antifungal, antitumour, and phytotoxic activity. More than 60 different structures were classified, which often cover broad families of peptides. 37 different structural units containing the α,β-dehydroamino acid residues were shown including various side chains, Z and E isomers, and main modifications: methylation of peptide bond as well as the introduction of ester group and heterocycle ring. The collected data show the relation between the structure and bioactivity. This allows the activity of compounds, which were not studied in this field, but which belong to a larger peptide family to be predicted. A few examples show that the type of the geometrical isomer of the α,β-dehydroamino acid residue can be important or even crucial for biological activity.
α,β-脱氢氨基酸是天然存在的非编码氨基酸,主要存在于肽类中。本综述聚焦于α,β-脱氢氨基酸的类型、脱氢肽的结构、其来源及生物活性。脱氢肽主要从细菌中分离得到,较少从真菌、海洋无脊椎动物甚至高等植物中分离得到。它们主要表现出抗生素、抗真菌、抗肿瘤和植物毒性活性。已分类的不同结构超过60种,这些结构通常涵盖广泛的肽家族。展示了37种含有α,β-脱氢氨基酸残基的不同结构单元,包括各种侧链、Z型和E型异构体以及主要修饰:肽键甲基化以及酯基和杂环的引入。收集的数据显示了结构与生物活性之间的关系。这使得可以预测该领域未研究但属于更大肽家族的化合物的活性。一些例子表明,α,β-脱氢氨基酸残基的几何异构体类型对于生物活性可能很重要甚至至关重要。