化学
肽
生物化学
抗菌活性
大肠杆菌
体外
细菌
生物合成
酶
抗菌剂
抗生素
最小抑制浓度
肠杆菌科
生物活性
酶抑制剂
细菌生长
立体化学
肽合成
翻译(生物学)
生长抑制
发酵
结构-活动关系
作者
Nathalie Bachmann,André Schultz,Manuela Zouatom,Tianyi Zhou,Carsten Degenhart,Uwe Koch,Sina Schäkermann,Julia Hüning,Sascha Heinrich,Michael Dal Molin,Mia‐Lisa Zischinsky,Sylvain Tourel,Anne-Kathrin Klebl,Jan Rybniker,Bert Klebl,Jürgen Scherkenbeck,Julia E. Bandow
标识
DOI:10.1016/j.ejmech.2026.118678
摘要
Peptide deformylase plays a crucial role in prokaryotic translation and constitutes an antibiotic target previously addressed in clinical trials. In eukaryotes, mitochondrial translation also relies on peptide deformylase, necessitating antibiotic development to aim for selective inhibition of the bacterial enzymes. In the present study, we investigated two compound series: derivatives of actinonin and compounds containing a 5-bromoindole scaffold. Antibacterial activity was evaluated by microdilution-based minimal inhibitory concentration assay and selectivity investigated using human peripheral blood mononuclear cells. In vitro peptide deformylase inhibition was compared for the Escherichia coli and human enzyme. To validate peptide deformylase inhibition in the bacterial cell, a mass spectrometric analysis directly coupled to the minimal inhibitory concentration assay was developed for the model organism Bacillus subtilis. Two compounds originating from this work (ZHO-119, ZHO-197) showed antibacterial activity comparable to actinonin. They both were highly for the bacterial enzyme selective in vitro and displayed no cytotoxicity. The mass spectrometry-based analysis indicates that in addition to peptide deformylase, ZHO-197 very effectively inhibits bacterial methionine aminopeptidase, the metallo-enzyme that removes the deformylated N-terminal methionine.
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