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甲萘醌生物合成的小分子抑制剂的演变

Evolution of Small Molecule Inhibitors of Menaquinone Biosynthesis.

作者信息

Sharma Pankaj, Jiang Quan, Li Shao-Gang, Ocke Elissa, Tsotetsi Kholiswa, Sukheja Paridhi, Singh Parul, Suryavanshi Shraddha, Morrison Ethan, Thadkapally Srinivas, Russo Riccardo, Penalva-Lopez Suyapa, Cangialosi Julianna, Sharma Vijeta, Johnson Kyla, Sarathy Jansy P, Nelson Andrew M, Park Steven, Zimmerman Matthew D, Alland David, Kumar Pradeep, Freundlich Joel S

机构信息

Department of Pharmacology, Physiology, and Neuroscience, Rutgers University - New Jersey Medical School, Newark, New Jersey 07103, United States.

Division of Infectious Disease, Department of Medicine and the Ruy V. Lourenço Center for the Study of Emerging and Re-emerging Pathogens, Rutgers University - New Jersey Medical School, Newark, New Jersey 07103, United States.

出版信息

J Med Chem. 2025 Mar 13;68(5):5774-5803. doi: 10.1021/acs.jmedchem.4c03156. Epub 2025 Mar 4.

Abstract

A dire need exists for novel drugs to treat infection. In an effort to build on our early efforts targeting the MenG enzyme within the menaquinone biosynthetic pathway, we have pursued the optimization of diaryl amide JSF-2911 to address its poor metabolic stability and modest potency. A hit evolution campaign focused on modification of the amine substructure within this hit compound, resulting in a range of analogues that have been profiled extensively. Among these derivatives, JSF-4536 and JSF-4898 demonstrated significantly improved biological profiles, notably offering submicromolar MIC values versus and promising values characterizing the mouse liver microsome stability, aqueous solubility, and mouse pharmacokinetic profile. JSF-4898 enhanced the efficacy of rifampicin in a subacute model of infection in mice. The findings suggest a rationale for the further optimization of MenG inhibitors to provide a novel therapeutic strategy to address infection.

摘要

迫切需要新型药物来治疗感染。为了在我们早期针对甲萘醌生物合成途径中的MenG酶所做努力的基础上更进一步,我们致力于优化二芳基酰胺JSF-2911,以解决其代谢稳定性差和效力一般的问题。一项命中物进化研究专注于对该命中化合物内的胺亚结构进行修饰,从而产生了一系列已被广泛表征的类似物。在这些衍生物中,JSF-4536和JSF-4898表现出显著改善的生物学特性,特别是对[具体病原体]的最低抑菌浓度(MIC)值达到亚微摩尔级别,并且在小鼠肝微粒体稳定性、水溶性和小鼠药代动力学方面具有良好的特性。JSF-4898在小鼠感染的亚急性模型中增强了利福平的疗效。这些发现为进一步优化MenG抑制剂以提供一种治疗感染的新策略提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee9/12333353/8b77211e534f/jm4c03156_0001.jpg

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