Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, China.
Department of Biopharmaceutical Sciences, College of Pharmaceutical Sciences, Soochow University, Suzhou 215123, China.
Int J Mol Sci. 2023 Jun 30;24(13):10962. doi: 10.3390/ijms241310962.
Alligator sinensis cathelicidins (As-CATHs) are antimicrobial peptides extracted from alligators that enable alligators to cope with diseases caused by bacterial infections. This study assessed the damaging effects of sequence-truncated and residue-substituted variants of As-CATH4, AS4-1, AS4-5, and AS4-9 (with decreasing charges but increasing hydrophobicity) on the membranes of Gram-negative bacteria at the molecular level by using coarse-grained molecular dynamics simulations. The simulations predicted that all the variants disrupt the structures of the inner membrane of Gram-negative bacteria, with AS4-9 having the highest antibacterial activity that is able to squeeze the membrane and extract lipids from the membrane. However, none of them can disrupt the structure of asymmetric outer membrane of Gram-negative bacteria, which is composed of lipopolysaccharides in the outer leaflet and phospholipids in the inner leaflet. Nonetheless, the adsorption of AS4-9 induces lipid scrambling in the membrane by lowering the free energy of a phospholipid flipping from the inner leaflet up to the outer leaflet. Upon binding onto the lipid-scrambled outer membrane, AS4-9s are predicted to squeeze and extract phospholipids from the membrane, AS4-5s have a weak pull-out effect, and AS4-1s mainly stay free in water without any lipid-extracting function. These findings provide inspiration for the development of potent therapeutic agents targeting bacteria.
扬子鳄 cathelicidins(As-CATHs)是从扬子鳄中提取的抗菌肽,使扬子鳄能够应对由细菌感染引起的疾病。本研究通过粗粒化分子动力学模拟,从分子水平评估了序列截断和残基取代的 As-CATH4、AS4-1、AS4-5 和 AS4-9(带点电荷减少但疏水性增加)变体对革兰氏阴性菌膜的破坏作用。模拟预测所有变体都会破坏革兰氏阴性菌内膜的结构,AS4-9 具有最高的抗菌活性,能够挤压膜并从膜中提取脂质。然而,它们都不能破坏由外膜脂多糖组成的革兰氏阴性菌不对称外膜的结构。然而,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成,外膜脂多糖由外膜脂多糖组成。尽管如此,AS4-9 的吸附通过降低磷脂从内膜翻转到外膜的自由能,诱导膜中的脂质重排。在结合到脂质重排的外膜上后,AS4-9 被预测会挤压并从膜中提取磷脂,AS4-5 具有较弱的拔出作用,而 AS4-1 主要游离于水中,没有任何提取脂质的功能。这些发现为开发针对细菌的有效治疗剂提供了启示。