Escherichia coli Topoisomerase IV E Subunit and an Inhibitor Binding Mode Revealed by NMR Spectroscopy

核磁共振光谱揭示大肠杆菌拓扑异构酶 IV E 亚基和抑制剂结合模式

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作者:Yan Li, Ying Lei Wong, Fui Mee Ng, Boping Liu, Yun Xuan Wong, Zhi Ying Poh, Shuang Liu, Siew Wen Then, Michelle Yueqi Lee, Hui Qi Ng, Qiwei Huang, Alvin W Hung, Joseph Cherian, Jeffrey Hill, Thomas H Keller, CongBao Kang

Abstract

Bacterial topoisomerases are attractive antibacterial drug targets because of their importance in bacterial growth and low homology with other human topoisomerases. Structure-based drug design has been a proven approach of efficiently developing new antibiotics against these targets. Past studies have focused on developing lead compounds against the ATP binding pockets of both DNA gyrase and topoisomerase IV. A detailed understanding of the interactions between ligand and target in a solution state will provide valuable information for further developing drugs against topoisomerase IV targets. Here we describe a detailed characterization of a known potent inhibitor containing a 9H-pyrimido[4,5-b]indole scaffold against the N-terminal domain of the topoisomerase IV E subunit from Escherichia coli (eParE). Using a series of biophysical and biochemical experiments, it has been demonstrated that this inhibitor forms a tight complex with eParE. NMR studies revealed the exact protein residues responsible for inhibitor binding. Through comparative studies of two inhibitors of markedly varied potencies, it is hypothesized that gaining molecular interactions with residues in the α4 and residues close to the loop of β1-α2 and residues in the loop of β3-β4 might improve the inhibitor potency.

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