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通过新型荧光偏振筛选靶向FtsZ变构结合位点,用于抗菌发现的细胞学和结构方法。

Targeting the FtsZ Allosteric Binding Site with a Novel Fluorescence Polarization Screen, Cytological and Structural Approaches for Antibacterial Discovery.

作者信息

Huecas Sonia, Araújo-Bazán Lidia, Ruiz Federico M, Ruiz-Ávila Laura B, Martínez R Fernando, Escobar-Peña Andrea, Artola Marta, Vázquez-Villa Henar, Martín-Fontecha Mar, Fernández-Tornero Carlos, López-Rodríguez María L, Andreu José M

机构信息

Centro de Investigaciones Biológicas Margarita Salas, CSIC, Ramiro de Maeztu 9, 28040 Madrid, Spain.

Dept. Química Orgánica, Facultad de Ciencias Químicas, UCM, Avda. Complutense s/n, 28040 Madrid, Spain.

出版信息

J Med Chem. 2021 May 13;64(9):5730-5745. doi: 10.1021/acs.jmedchem.0c02207. Epub 2021 Apr 28.

Abstract

Bacterial resistance to antibiotics makes previously manageable infections again disabling and lethal, highlighting the need for new antibacterial strategies. In this regard, inhibition of the bacterial division process by targeting key protein FtsZ has been recognized as an attractive approach for discovering new antibiotics. Binding of small molecules to the cleft between the N-terminal guanosine triphosphate (GTP)-binding and the C-terminal subdomains allosterically impairs the FtsZ function, eventually inhibiting bacterial division. Nonetheless, the lack of appropriate chemical tools to develop a binding screen against this site has hampered the discovery of FtsZ antibacterial inhibitors. Herein, we describe the first competitive binding assay to identify FtsZ allosteric ligands interacting with the interdomain cleft, based on the use of specific high-affinity fluorescent probes. This novel assay, together with phenotypic profiling and X-ray crystallographic insights, enables the identification and characterization of FtsZ inhibitors of bacterial division aiming at the discovery of more effective antibacterials.

摘要

细菌对抗生素的耐药性使以前可控制的感染再次变得具有致残性和致命性,这凸显了开发新抗菌策略的必要性。在这方面,通过靶向关键蛋白FtsZ来抑制细菌分裂过程已被认为是发现新抗生素的一种有吸引力的方法。小分子与N端鸟苷三磷酸(GTP)结合结构域和C端亚结构域之间的裂隙结合,会变构损害FtsZ的功能,最终抑制细菌分裂。尽管如此,缺乏合适的化学工具来针对该位点开展结合筛选,阻碍了FtsZ抗菌抑制剂的发现。在此,我们基于使用特异性高亲和力荧光探针,描述了首个用于鉴定与结构域间裂隙相互作用的FtsZ变构配体的竞争性结合试验。这种新颖的试验,连同表型分析和X射线晶体学见解,能够鉴定和表征旨在发现更有效抗菌药物的细菌分裂FtsZ抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2846/8478281/7f19b8c14f6e/jm0c02207_0002.jpg

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