肽聚糖
美罗培南
微生物学
亚胺培南
结核分枝杆菌
化学
酶动力学
生物
生物化学
抗生素
酶
肺结核
医学
活动站点
抗生素耐药性
病理
作者
Mary Nantongo,David C. Nguyen,Christopher R. Bethel,Magdalena A. Taracila,Qing Li,Khalid M Dousa,Eunjeong Shin,Sebastian G. Kurz,Liem Nguyen,Barry N. Kreiswirth,W. Henry Boom,Mark S. Plummer,Robert A. Bonomo
标识
DOI:10.1021/acsinfecdis.4c00119
摘要
Peptidoglycan synthesis is an underutilized drug target in Mycobacterium tuberculosis (Mtb). Diazabicyclooctanes (DBOs) are a class of broad-spectrum β-lactamase inhibitors that also inhibit certain peptidoglycan transpeptidases that are important in mycobacterial cell wall synthesis. We evaluated the DBO durlobactam as an inhibitor of BlaC, the Mtb β-lactamase, and multiple Mtb peptidoglycan transpeptidases (PonA1, LdtMt1, LdtMt2, LdtMt3, and LdtMt5). Timed electrospray ionization mass spectrometry (ESI-MS) captured acyl-enzyme complexes with BlaC and all transpeptidases except LdtMt5. Inhibition kinetics demonstrated durlobactam was a potent and efficient DBO inhibitor of BlaC (KI app 9.2 ± 0.9 μM, k2/K 5600 ± 560 M–1 s–1) and similar to clavulanate (KI app 3.3 ± 0.6 μM, k2/K 8400 ± 840 M–1 s–1); however, durlobactam had a lower turnover number (tn = kcat/kinact) than clavulanate (1 and 8, respectively). KI app values with durlobactam and clavulanate were similar for peptidoglycan transpeptidases, but ESI-MS captured durlobactam complexes at more time points. Molecular docking and simulation demonstrated several productive interactions of durlobactam in the active sites of BlaC, PonA1, and LdtMt2. Antibiotic susceptibility testing was conducted on 11 Mtb isolates with amoxicillin, ceftriaxone, meropenem, imipenem, clavulanate, and durlobactam. Durlobactam had a minimum inhibitory concentration (MIC) range of 0.5–16 μg/mL, similar to the ranges for meropenem (1–32 μg/mL) and imipenem (0.5–64 μg/mL). In β-lactam + durlobactam combinations (1:1 mass/volume), MICs were lowered 4- to 64-fold for all isolates except one with meropenem–durlobactam. This work supports further exploration of novel β-lactamase inhibitors that target BlaC and Mtb peptidoglycan transpeptidases.
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