Institute of Translational Medicine, Shanghai University, Shanghai, China.
School of Pharmacy, Naval Medical University, Shanghai, China.
J Pept Sci. 2024 Jan;30(1):e3533. doi: 10.1002/psc.3533. Epub 2023 Jul 11.
Aurein1.2 is secreted by the Australian tree frog Litoria aurea and is active against a broad range of infectious microbes including bacteria, fungi, and viruses. Its antifungal potency has garnered considerable interest in developing novel classes of natural antifungal agents to fight pathogenic infection by fungi. However, serious pharmacological hurdles remain, hindering its clinical translation. To alleviate its susceptibility to proteolytic degradation and improve its antifungal activity, six conformationally locked peptides were synthesized through hydrocarbon stapling modification and evaluated for their physicochemical and antifungal parameters. Among them, SAU2-4 exhibited significant improvement in helicity levels, protease resistance, and antifungal activity compared to the template linear peptide Aurein1.2. These results confirmed the prominent role of hydrocarbon stapling modification in the manipulation of peptide pharmacological properties and enhanced the application potential of Aurein1.2 in the field of antifungal agent development.
Aurein1.2 由澳大利亚树蛙 Litoria aurea 分泌,对包括细菌、真菌和病毒在内的多种传染性微生物具有活性。其抗真菌活性引起了人们极大的兴趣,促使人们开发新型天然抗真菌药物来对抗真菌的致病性感染。然而,严重的药理学障碍仍然存在,阻碍了其临床转化。为了降低其对蛋白水解降解的敏感性并提高其抗真菌活性,通过烃 stapling 修饰合成了 6 种构象锁定肽,并对其理化和抗真菌参数进行了评估。其中,SAU2-4 与模板线性肽 Aurein1.2 相比,其螺旋水平、蛋白酶抗性和抗真菌活性均有显著提高。这些结果证实了烃 stapling 修饰在操纵肽药理学性质方面的突出作用,并增强了 Aurein1.2 在抗真菌药物开发领域的应用潜力。