Deisinger Julia P, Arts Melina, Kotsogianni Ioli, Puls Jan-Samuel, Grein Fabian, Ortiz-López Francisco Javier, Martin Nathaniel I, Müller Anna, Genilloud Olga, Schneider Tanja
Institute for Pharmaceutical Microbiology, University of Bonn, Meckenheimer Allee 168, 53115 Bonn, Germany.
DZIF, German Center for Infectious Research, Partner Site Bonn-Cologne, Bonn, Germany.
iScience. 2023 Mar 11;26(4):106394. doi: 10.1016/j.isci.2023.106394. eCollection 2023 Apr 21.
Antibiotic resistance is reaching alarming levels, demanding for the discovery and development of antibiotics with novel chemistry and mechanisms of action. The recently discovered antibiotic cacaoidin combines the characteristic lanthionine residue of lanthipeptides and the linaridin-specific N-terminal dimethylation in an unprecedented N-dimethyl lanthionine ring, being therefore designated as the first class V lanthipeptide (lanthidin). Further notable features include the high D-amino acid content and a unique disaccharide substitution attached to the tyrosine residue. Cacaoidin shows antimicrobial activity against gram-positive pathogens and was shown to interfere with peptidoglycan biosynthesis. Initial investigations indicated an interaction with the peptidoglycan precursor lipid II as described for several lanthipeptides. Using a combination of biochemical and molecular interaction studies we provide evidence that cacaoidin is the first natural product demonstrated to exhibit a dual mode of action combining binding to lipid II and direct inhibition of cell wall transglycosylases.
抗生素耐药性正达到令人担忧的程度,这就需要发现和开发具有新型化学结构和作用机制的抗生素。最近发现的抗生素卡卡肽将羊毛硫肽特有的羊毛硫氨酸残基和线性环肽特有的N端二甲基化结合在一个前所未有的N-二甲基羊毛硫氨酸环中,因此被指定为第一类V型羊毛硫肽(羊毛硫定)。其他显著特征包括高D-氨基酸含量以及与酪氨酸残基相连的独特二糖取代基。卡卡肽对革兰氏阳性病原体具有抗菌活性,并被证明会干扰肽聚糖生物合成。初步研究表明,它与几种羊毛硫肽一样,与肽聚糖前体脂II相互作用。通过生化和分子相互作用研究相结合,我们提供了证据,证明卡卡肽是首个被证明具有双重作用模式的天然产物,该模式包括与脂II结合以及直接抑制细胞壁转糖基酶。