ATP合酶
寡霉素
基岩
细菌
生物化学
酶
三磷酸腺苷
生物
抗生素
微生物学
化学
ATP酶
医学
结核分枝杆菌
肺结核
遗传学
病理
作者
Rawan Mackieh,Nadia Al-Bakkar,Milena Kfoury,Rabih Roufayel,Jean‐Marc Sabatier,Ziad Fajloun
出处
期刊:Antibiotics
[Multidisciplinary Digital Publishing Institute]
日期:2023-03-24
卷期号:12 (4): 650-650
被引量:40
标识
DOI:10.3390/antibiotics12040650
摘要
ATP, the power of all cellular functions, is constantly used and produced by cells. The enzyme called ATP synthase is the energy factory in all cells, which produces ATP by adding inorganic phosphate (Pi) to ADP. It is found in the inner, thylakoid and plasma membranes of mitochondria, chloroplasts and bacteria, respectively. Bacterial ATP synthases have been the subject of multiple studies for decades, since they can be genetically manipulated. With the emergence of antibiotic resistance, many combinations of antibiotics with other compounds that enhance the effect of these antibiotics have been proposed as approaches to limit the spread of antibiotic-resistant bacteria. ATP synthase inhibitors, such as resveratrol, venturicidin A, bedaquiline, tomatidine, piceatannol, oligomycin A and N,N-dicyclohexylcarbodiimide were the starting point of these combinations. However, each of these inhibitors target ATP synthase differently, and their co-administration with antibiotics increases the susceptibility of pathogenic bacteria. After a brief description of the structure and function of ATP synthase, we aim in this review to highlight therapeutic applications of the major bacterial ATP synthase inhibitors, including animal's venoms, and to emphasize their importance in decreasing the activity of this enzyme and subsequently eradicating resistant bacteria as ATP synthase is their source of energy.
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