仿形(计算机编程)
超氧化物
化学
计算生物学
生物
计算机科学
生物化学
酶
操作系统
作者
Timo Risch,Benedikt Hellwinkel,Dietrich Mostert,Andreas M. Kany,Danny Solga,Tim Seedorf,Dominik Heimann,Jessica Hoppstädter,Daniel Kohnhäuser,Jil-Sophie Hilgers,Franziska Fries,Felix Deschner,Mark Brönstrup,Andreas Kirschning,Stephan A. Sieber,Thomas Pietschmann,Alexandra K. Kiemer,Jennifer Herrmann,Rolf Müller
标识
DOI:10.1038/s44386-025-00020-7
摘要
Abstract Antimicrobial resistance poses a fundamental global threat, necessitating new strategies for effective therapies. Cystobactamids, a class of antibacterial agents targeting bacterial gyrase and topoisomerase IV, represent a non-traditional chemical scaffold with broad-spectrum activity. For toxicological de-risking, we performed a comprehensive profiling on eukaryotic cells, focusing on cytotoxicity, genotoxicity, and mitochondrial toxicity, demonstrating cellular safety and superoxide scavenging properties. Studies in zebrafish embryos assessed developmental, cardiovascular, and hepatic toxicity, indicating a favorable in vivo safety profile. Metabolism studies revealed glucuronidation and amide bond hydrolysis as key pathways, whereby cystobactamid metabolic stability substantially improved by cobicistat co-treatment. Affinity-based protein profiling identified the cholesterol- and HCV-receptor scavenger receptor class B member 1 (SCARB1) as a primary eukaryotic off-target protein, with cystobactamids shown to inhibit SCARB1´s function, preventing hepatitis C virus pseudoparticle entry into cells. These findings suggest a high therapeutic potential for cystobactamids and highlight SCARB1 as a primary eukaryotic target.
科研通智能强力驱动
Strongly Powered by AbleSci AI