Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilov Street 32, 119991 Moscow, Russia.
Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Corso della Repubblica 79, I-04100 Latina, Italy.
Biomolecules. 2023 Sep 26;13(10):1451. doi: 10.3390/biom13101451.
New antibiotics are unquestionably needed to fight the emergence and spread of multidrug-resistant bacteria. To date, antibiotics targeting bacterial central metabolism have been poorly investigated. By determining the minimal inhibitory concentration (MIC) of desmethylphosphinothricin (Glu-γ-P), an analogue of glutamate with a phosphinic moiety replacing the γ-carboxyl group, we previously showed its promising antibacterial activity on . Herein, we synthetized and determined the growth inhibition exerted on by an -Leu dipeptide derivative of Glu-γ-P (-Leu-,-Glu-γ-P). Furthermore, we compared the growth inhibition obtained with this dipeptide with that exerted by the free amino acid, i.e., Glu-γ-P, and by their phosphonic and non-desmethylated analogues. All the tested compounds were more effective when assayed in a chemically-defined minimal medium. The dipeptide -Leu-,-Glu-γ-P had a significantly improved antibacterial activity (2 μg/mL), at a concentration between the non-desmethytaled (0.1 μg/mL) and the phosphonic (80 μg/mL) analogues. Also, in , the dipeptide -Leu-,-Glu-γ-P displayed an activity comparable to that of the antibiotic amoxicillin. This work highlights the antibacterial relevance of the phosphinic pharmacophore and proposes new avenues for the development of novel antimicrobial drugs containing the phosphinic moiety.
毫无疑问,需要新的抗生素来对抗多药耐药菌的出现和传播。迄今为止,针对细菌中心代谢的抗生素研究甚少。通过确定 Glu-γ-P(谷氨酸的类似物,其膦酸部分取代了 γ-羧基)的最小抑菌浓度(MIC),我们之前已经证明其对 具有有前景的抗菌活性。在此,我们合成并确定了 Glu-γ-P 的 -Leu 二肽衍生物(-Leu-,-Glu-γ-P)对 的生长抑制作用。此外,我们将该二肽与游离氨基酸(即 Glu-γ-P)及其膦酸和非去甲基化类似物的生长抑制作用进行了比较。所有测试的化合物在化学定义的最小培养基中进行测定时效果更好。二肽 -Leu-,-Glu-γ-P 的抗菌活性显著提高(2 μg/mL),其浓度介于非去甲基化(0.1 μg/mL)和膦酸(80 μg/mL)类似物之间。此外,在 中,二肽 -Leu-,-Glu-γ-P 的活性可与抗生素阿莫西林相媲美。这项工作突出了膦酸药效团的抗菌相关性,并为开发含有膦酸部分的新型抗菌药物提供了新途径。