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孤立的 DH5α 肽聚糖囊泡的分子成像鉴定了细胞壁抑制抗生素的作用机制。

Molecular Imaging of Isolated DH5α Peptidoglycan Sacculi Identifies the Mechanism of Action of Cell Wall-Inhibiting Antibiotics.

机构信息

Institute of Pharmaceutical Biology and Phytochemistry, University of Münster, D-48149 Münster, Germany.

Institute of Pharmaceutical and Medicinal Chemistry, University of Münster, D-48149 Münster, Germany.

出版信息

ACS Chem Biol. 2023 Apr 21;18(4):848-860. doi: 10.1021/acschembio.2c00945. Epub 2023 Mar 9.

Abstract

Antibiotic resistance of pathogenic bacteria needs to be urgently addressed by the development of new antibacterial entities. Although the prokaryotic cell wall comprises a valuable target for this purpose, development of novel cell wall-active antibiotics is mostly missing today. This is mainly caused by hindrances in the assessment of isolated enzymes of the co-dependent murein synthesis machineries, e.g., the elongasome and divisome. We therefore present imaging methodologies to evaluate inhibitors of bacterial cell wall synthesis by high-resolution atomic force microscopy on isolated murein sacculi. With the ability to elucidate the peptidoglycan ultrastructure of cells, unprecedented molecular insights into the mechanisms of antibiotics were established. The nanoscopic impairments introduced by ampicillin, amoxicillin, and fosfomycin were not only identified by AFM but readily correlated with their known mechanism of action. These valuable in vitro capabilities will facilitate the identification and evaluation of new antibiotic leads in the future.

摘要

需要开发新的抗菌实体来解决病原菌的抗生素耐药性问题。尽管原核细胞壁是一个有价值的目标,但今天新型细胞壁活性抗生素的开发大多缺失。这主要是由于评估依赖于共同的黏肽合成机制的孤立酶(例如,延长酶和分裂酶)存在阻碍。因此,我们提出了成像方法,通过高分辨率原子力显微镜在分离的黏肽囊中评估细菌细胞壁合成抑制剂。该方法能够阐明细胞的肽聚糖超微结构,从而以前所未有的分子视角揭示抗生素的作用机制。通过原子力显微镜不仅可以识别氨苄西林、阿莫西林和磷霉素引入的纳米级损伤,还可以很容易地将其与已知的作用机制相关联。这些有价值的体外能力将有助于未来识别和评估新的抗生素先导化合物。

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