Ye Zhuming, Zhou Xiaowei, Xi Xinping, Zai Yu, Zhou Mei, Chen Xiaoling, Ma Chengbang, Chen Tianbao, Wang Lei, Kwok Hang Fai
Institute of Translational Medicine, Faculty of Health Sciences, University of Macau, Taipa, Macau SAR 999078, China.
Department of Nutrition, Henry Fok School of Food Science and Engineering, Shaoguan University, Shaoguan 512005, China.
Pharmaceutics. 2022 Mar 10;14(3):604. doi: 10.3390/pharmaceutics14030604.
Amphibian skin secretion is an ideal source of antimicrobial peptides that are difficult to induce drug resistance to due to their membrane-targeting mechanism as a new treatment scheme. In this study, a natural antimicrobial peptide Temporin-1CEh was identified by molecular cloning and mass spectrometry from the skin secretions of the Chinese forest frog (). Through the study of the structure and biological activity, it was found that Temporin-1CEh was a helical peptide from the Temporin family, and possessed good anti-Gram-positive bacteria activity through the mechanism of membrane destruction. Seven analogues were further designed to obtain broad-spectrum antimicrobial activity and higher stability in different physiological conditions. The results showed that T1CEh-KKPWW showed potent antibacterial activity with significantly increasing the activity against Gram-negative bacteria in vitro and in vivo with low haemolysis. In addition, T1CEh-KKPWW2 showed high sensitivity to the pH, serum or salts conditions, which applied a branched structure to allow the active units of the peptide to accumulate. Even though the haemolytic activity was increased, the stable antibacterial activity made this novel analogue meet the conditions to become a potential candidate in future antimicrobial and antibiofilm applications.
两栖动物皮肤分泌物是抗菌肽的理想来源,作为一种新的治疗方案,由于其膜靶向机制,抗菌肽难以诱导耐药性。在本研究中,通过分子克隆和质谱法从中国林蛙的皮肤分泌物中鉴定出一种天然抗菌肽Temporin-1CEh。通过对其结构和生物活性的研究,发现Temporin-1CEh是来自Temporin家族的一种螺旋肽,通过膜破坏机制具有良好的抗革兰氏阳性菌活性。进一步设计了7种类似物,以获得广谱抗菌活性和在不同生理条件下更高的稳定性。结果表明,T1CEh-KKPWW具有强大的抗菌活性,在体外和体内对革兰氏阴性菌的活性显著增加,且溶血率低。此外,T1CEh-KKPWW2对pH、血清或盐条件具有高敏感性,其采用分支结构使肽的活性单元聚集。尽管溶血活性增加,但稳定的抗菌活性使这种新型类似物符合成为未来抗菌和抗生物膜应用潜在候选物的条件。