Andrä Jörg, Jakovkin Igor, Grötzinger Joachim, Hecht Oliver, Krasnosdembskaya Anna D, Goldmann Torsten, Gutsmann Thomas, Leippe Matthias
Research Center Borstel, Leibniz-Center for Medicine and Biosciences, Parkallee 10, 23845 Borstel, Germany.
Biochem J. 2008 Feb 15;410(1):113-22. doi: 10.1042/BJ20071051.
The solution structure and the mode of action of arenicin isoform 1, an antimicrobial peptide with a unique 18-residue loop structure, from the lugworm Arenicola marina were elucidated here. Arenicin folds into a two-stranded antiparallel beta-sheet. It exhibits high antibacterial activity at 37 and 4 degrees C against Gram-negative bacteria, including polymyxin B-resistant Proteus mirabilis. Bacterial killing occurs within minutes and is accompanied by membrane permeabilization, membrane detachment and release of cytoplasm. Interaction of arenicin with reconstituted membranes that mimic the lipopolysaccharide-containing outer membrane or the phospholipid-containing plasma membrane of Gram-negative bacteria exhibited no pronounced lipid specificity. Arenicin-induced current fluctuations in planar lipid bilayers correspond to the formation of short-lived heterogeneously structured lesions. Our results strongly suggest that membrane interaction plays a pivotal role in the antibacterial activity of arenicin.
本文阐明了沙蠋(Arenicola marina)体内抗菌肽沙蚕毒素同工型1的溶液结构及其作用模式,该抗菌肽具有独特的18个残基的环结构。沙蚕毒素折叠成两条反平行的β-折叠片层。在37℃和4℃时,它对革兰氏阴性菌具有高抗菌活性,包括对多粘菌素B耐药的奇异变形杆菌。几分钟内即可杀死细菌,并伴随着膜通透性增加、膜脱离和细胞质释放。沙蚕毒素与模拟革兰氏阴性菌含脂多糖外膜或含磷脂质膜的重构膜相互作用,未表现出明显的脂质特异性。沙蚕毒素诱导的平面脂质双分子层电流波动对应于短寿命异质结构损伤的形成。我们的结果有力地表明,膜相互作用在沙蚕毒素的抗菌活性中起关键作用。