Binding properties of the anti-TB drugs bedaquiline and TBAJ-876 to a mycobacterial F-ATP synthase

IF 2.7 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Research in Structural Biology Pub Date : 2022-01-01 DOI:10.1016/j.crstbi.2022.09.001
Alexander Krah , Gerhard Grüber , Peter J. Bond
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引用次数: 4

Abstract

Tuberculosis (TB), the deadly disease caused by Mycobacterium tuberculosis (Mtb), kills more people worldwide than any other bacterial infectious disease. There has been a recent resurgence of TB drug discovery activities, resulting in the identification of a number of novel enzyme inhibitors. Many of these inhibitors target the electron transport chain complexes and the F1FO-ATP synthase; these enzymes represent new target spaces for drug discovery, since the generation of ATP is essential for the bacterial pathogen's physiology, persistence, and pathogenicity. The anti-TB drug bedaquiline (BDQ) targets the Mtb F-ATP synthase and is used as salvage therapy against this disease. Medicinal chemistry efforts to improve the physio-chemical properties of BDQ resulted in the discovery of 3,5-dialkoxypyridine (DARQ) analogs to which TBAJ-876 belongs. TBAJ-876, a clinical development candidate, shows attractive in vitro and in vivo antitubercular activity. Both BDQ and TBAJ-876 inhibit the mycobacterial F1FO-ATP synthase by stopping rotation of the c-ring turbine within the FO domain, thereby preventing proton translocation and ATP synthesis to occur. While structural data for the BDQ bound state are available, no structural information about TBAJ-876 binding have been described. In this study, we show how TBAJ-876 binds to the FO domain of the M. smegmatis F1FO-ATP synthase. We further calculate the binding free energy of both drugs bound to their target and predict an increased affinity of TBAJ-876 for the FO domain. This approach will be useful in future efforts to design new and highly potent DARQ analogs targeting F-ATP synthases of Mtb, nontuberculosis mycobacteria (NTM) as well as the M. leprosis complex.

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抗结核药物贝达喹啉和TBAJ-876与分枝杆菌F-ATP合酶的结合特性
结核病(TB)是由结核分枝杆菌(Mtb)引起的致命疾病,在全世界造成的死亡人数超过任何其他细菌性传染病。最近结核病药物发现活动的复苏,导致许多新的酶抑制剂的鉴定。这些抑制剂中的许多靶向电子传递链复合物和F1FO-ATP合成酶;这些酶代表了药物发现的新靶点空间,因为ATP的产生对细菌病原体的生理、持久性和致病性至关重要。抗结核药物贝达喹啉(BDQ)靶向Mtb F-ATP合成酶,并被用作对这种疾病的补救性治疗。药物化学方面对BDQ理化性质的改进导致了TBAJ-876所属的3,5-二氧基吡啶(DARQ)类似物的发现。TBAJ-876是临床开发候选药物,具有良好的体外和体内抗结核活性。BDQ和TBAJ-876均能抑制分枝杆菌F1FO-ATP合成酶,通过停止FO结构域内c环涡轮的旋转,从而阻止质子易位和ATP合成的发生。虽然BDQ结合状态的结构数据是可用的,但没有关于TBAJ-876结合的结构信息被描述。在这项研究中,我们展示了TBAJ-876如何结合到耻垢马F1FO-ATP合成酶的FO结构域。我们进一步计算了两种药物与它们的靶标结合的结合自由能,并预测TBAJ-876对FO结构域的亲和力增加。这种方法将有助于未来设计针对结核分枝杆菌、非结核分枝杆菌(NTM)和麻风分枝杆菌复合体F-ATP合成酶的新型高效DARQ类似物。
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CiteScore
4.60
自引率
0.00%
发文量
33
审稿时长
104 days
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