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从加里德明和表皮素作用机制研究中洞察羊毛硫抗生素的体内活性。

Insights into in vivo activities of lantibiotics from gallidermin and epidermin mode-of-action studies.

作者信息

Bonelli Raquel Regina, Schneider Tanja, Sahl Hans-Georg, Wiedemann Imke

机构信息

Institut für Medizinische Mikrobiologie, Immunologie und Parasitologie, Pharmazeutische Mikrobiologie, Universität Bonn, Meckenheimer Allee 168, D-53115 Bonn, Germany.

出版信息

Antimicrob Agents Chemother. 2006 Apr;50(4):1449-57. doi: 10.1128/AAC.50.4.1449-1457.2006.

Abstract

The activity of lanthionine-containing peptide antibiotics (lantibiotics) is based on different killing mechanisms which may be combined in one molecule. The prototype lantibiotic nisin inhibits peptidoglycan synthesis and forms pores through specific interaction with the cell wall precursor lipid II. Gallidermin and epidermin possess the same putative lipid II binding motif as nisin; however, both peptides are considerably shorter (22 amino acids, compared to 34 in nisin). We demonstrate that in model membranes, lipid II-mediated pore formation by gallidermin depends on membrane thickness. With intact cells, pore formation was less pronounced than for nisin and occurred only in some strains. In Lactococcus lactis subsp. cremoris HP, gallidermin was not able to release K+, and a mutant peptide, [A12L]gallidermin, in which the ability to form pores was disrupted, was as potent as wild-type gallidermin, indicating that pore formation does not contribute to killing. In contrast, nisin rapidly formed pores in the L. lactis strain; however, it was approximately 10-fold less effective in killing. The superior activity of gallidermin in a cell wall biosynthesis assay may help to explain this high potency. Generally, it appears that the multiple activities of lantibiotics combine differently for individual target strains.

摘要

含羊毛硫氨酸的肽类抗生素(羊毛硫抗生素)的活性基于不同的杀伤机制,这些机制可能在一个分子中结合。原型羊毛硫抗生素乳链菌肽抑制肽聚糖合成,并通过与细胞壁前体脂质II的特异性相互作用形成孔道。加里德菌素和表皮菌素与乳链菌肽具有相同的假定脂质II结合基序;然而,这两种肽的长度都要短得多(22个氨基酸,而乳链菌肽为34个)。我们证明,在模型膜中,加里德菌素通过脂质II介导的孔道形成取决于膜的厚度。对于完整细胞,孔道形成不如乳链菌肽明显,且仅在某些菌株中发生。在乳酸乳球菌乳脂亚种HP中,加里德菌素无法释放K+,而一种形成孔道能力被破坏的突变肽[A12L]加里德菌素与野生型加里德菌素一样有效,这表明孔道形成对杀伤作用没有贡献。相比之下,乳链菌肽在乳酸乳球菌菌株中迅速形成孔道;然而,其杀伤效果约低10倍。加里德菌素在细胞壁生物合成试验中的卓越活性可能有助于解释这种高效性。一般来说,羊毛硫抗生素的多种活性针对不同的目标菌株组合方式不同。

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