铜绿假单胞菌
化学
抗生素
还原酶
囊性纤维化
微生物学
小分子
立体化学
生物化学
酶
细菌
生物
遗传学
作者
Marta Acebrón-García-de-Eulate,Joan Mayol-Llinàs,Matthew T. O. Holland,So Yeon Kim,Karen Brown,Chiara Marchetti,Jeannine Hess,Ornella Di Pietro,V. Mendes,Chris Abell,R. Andrés Floto,Anthony G. Coyne,Tom L. Blundell
标识
DOI:10.1021/acs.jmedchem.1c01684
摘要
Pseudomonas aeruginosa is of major concern for cystic fibrosis patients where this infection can be fatal. With the emergence of drug-resistant strains, there is an urgent need to develop novel antibiotics against P. aeruginosa . MurB is a promising target for novel antibiotic development as it is involved in the cell wall biosynthesis. MurB has been shown to be essential in P. aeruginosa, and importantly, no MurB homologue exists in eukaryotic cells. A fragment-based drug discovery approach was used to target Pa MurB. This led to the identification of a number of fragments, which were shown to bind to MurB. One fragment, a phenylpyrazole scaffold, was shown by ITC to bind with an affinity of K d = 2.88 mM (LE 0.23). Using a structure guided approach, different substitutions were synthesized and the initial fragment was optimized to obtain a small molecule with K d = 3.57 μM (LE 0.35).
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