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蛙皮素类似物对 具有更广泛的抗菌活性和更强的抗生物膜潜力。

The Analogs of Temporin-GHa Exhibit a Broader Spectrum of Antimicrobial Activity and a Stronger Antibiofilm Potential against .

机构信息

Key Laboratory of Tropical Biological Resources of Ministry of Education, School of Life and Pharmaceutical Sciences, Hainan University, Haikou 570228, China.

College of Animal Science and Technology, Hainan University, Haikou 570228, China.

出版信息

Molecules. 2019 Nov 18;24(22):4173. doi: 10.3390/molecules24224173.

Abstract

The abuse of antibiotics has led to the emergence of multidrug-resistant bacteria, which is becoming a serious worldwide problem people have to face. In our previous study, temporin-GHa (GHa) cloned from showed antimicrobial activity against Gram-positive bacteria. In order to improve its therapeutic potential, we used a template-based and a database-assisted design to obtain three derived peptides by replacing the histidine at both ends of GHa with lysine, which exhibited faster and stronger bactericidal activity and a broader spectrum than the parent peptide. GHaK and GHa4K targeted to the bacterial membrane to exert their antibacterial activities at a faster membrane damage rate. The derived peptides inhibited the initial adhesion and the formation of biofilms, and eradicated the mature biofilms, which indicated that the derived peptides effectively penetrated the biofilm and killed bacteria. The therapeutic index (TI) and cell selectivity index (CSI) of the derived peptides increased significantly, which means a broader therapeutic window of the derived peptides. The derived peptides with improved activity and cell selectivity have the potential to be the promising candidates for the treatment of infections. Our research also provides new insights into the design and development of antimicrobial peptides.

摘要

抗生素的滥用导致了多药耐药菌的出现,这正在成为一个全世界都必须面对的严重问题。在我们之前的研究中,从 中克隆的杀菌肽 GHa (GHa) 对革兰氏阳性菌具有抗菌活性。为了提高其治疗潜力,我们使用基于模板和数据库辅助的设计,通过用赖氨酸取代 GHa 两端的组氨酸获得了三个衍生肽,它们表现出比母肽更快、更强的杀菌活性和更广泛的杀菌谱。GHaK 和 GHa4K 靶向细菌膜,以更快的膜损伤速度发挥其抗菌作用。衍生肽抑制初始粘附和生物膜的形成,并根除成熟的生物膜,这表明衍生肽有效地穿透生物膜并杀死细菌。衍生肽的治疗指数 (TI) 和细胞选择性指数 (CSI) 显著增加,这意味着衍生肽具有更宽的治疗窗口。具有改善的活性和细胞选择性的衍生肽有可能成为治疗 感染的有前途的候选药物。我们的研究还为抗菌肽的设计和开发提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98cc/6891419/c71eef5e542b/molecules-24-04173-g001.jpg

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