Ben Haj Salah Khoubaib, Legrand Baptiste, Das Sanjit, Martinez Jean, Inguimbert Nicolas
Université de Perpignan Via Domitia, Centre de Recherche Insulaire et Observatoire de l'Environnement (CRIOBE), USR CNRS 3278, centre de phytopharmacie, bâtiment T, 58 avenue P. Alduy, 66860, Perpignan, France.
Institut des Biomolécules Max Mousseron (IBMM), UMR 5247 CNRS, Université de Montpellier, 15 avenue Charles Flahault, BP 14491, 34093, Montpellier Cedex 5, France.
Biopolymers. 2015 Sep;104(5):611-21. doi: 10.1002/bip.22641.
Structured peptides gained more attention over a decade because of their biological properties, biocompatibility and ability to act as modulators of protein/protein interactions, antibiotics, analgesics, immunosuppressants or as imaging agents to cite a few relevant applications. However, their poor bioavalability due in part to the susceptibility of the peptide bond to proteolytic cleavages often impaired their development and considerably limited their therapeutic use. To circumvent these problems, many efforts are undertaken to discover stable amide bond mimics resistant to proteolytic degradation. Among them the 1,2,3-triazole emerged as a highly stable analogue of the trans-peptide bond to generate bioactive peptides. Here we report a convenient approach to readily substitute amide bonds by triazole rings in Aib-containing peptides using Aibψ[Tz]-Xaa dipeptide-like units. We defined their application in solid phase synthesis and generated short model peptide sequences to study the impact of the triazole incorporation on their conformations in solution by circular dichroism and nuclear magnetic resonance spectroscopies.
由于其生物学特性、生物相容性以及作为蛋白质/蛋白质相互作用调节剂、抗生素、镇痛药、免疫抑制剂或成像剂等一些相关应用的能力,结构化肽在过去十年中受到了更多关注。然而,它们较差的生物利用度部分归因于肽键对蛋白水解切割的敏感性,这常常阻碍它们的发展并极大地限制了它们的治疗用途。为了规避这些问题,人们进行了许多努力来发现对蛋白水解降解具有抗性的稳定酰胺键模拟物。其中,1,2,3-三唑作为反式肽键的一种高度稳定类似物出现,用于生成生物活性肽。在这里,我们报告了一种简便的方法,使用Aibψ[Tz]-Xaa二肽样单元,在含Aib的肽中通过三唑环轻松取代酰胺键。我们定义了它们在固相合成中的应用,并生成了短的模型肽序列,通过圆二色光谱和核磁共振光谱研究三唑掺入对其在溶液中构象的影响。