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Re-Understanding the Mechanisms of Action of the Anti-Mycobacterial Drug Bedaquiline

机译:重新认识抗分枝杆菌药物贝达喹啉的作用机理

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摘要

Bedaquiline (BDQ) inhibits ATP generation in by interfering with the F-ATP synthase activity. Two mechanisms of action of BDQ are broadly accepted. A direct mechanism involves BDQ binding to the enzyme’s -ring to block its rotation, thus inhibiting ATP synthesis in the enzyme’s catalytic α β -headpiece. An indirect mechanism involves BDQ uncoupling electron transport in the electron transport chain from ATP synthesis at the F-ATP synthase. In a recently uncovered second direct mechanism, BDQ binds to the enzyme’s ε-subunit to disrupt its ability to link -ring rotation to ATP synthesis at the α β -headpiece. However, this mechanism is controversial as the drug’s binding affinity for the isolated ε-subunit protein is moderate and spontaneous resistance mutants in the ε-subunit cannot be isolated. Recently, the new, structurally distinct BDQ analogue TBAJ-876 was utilized as a chemical probe to revisit BDQ’s mechanisms of action. In this review, we first summarize discoveries on BDQ’s mechanisms of action and then describe the new insights derived from the studies of TBAJ-876. The TBAJ-876 investigations confirm the -ring as a target, while also supporting a functional role for targeting the ε-subunit. Surprisingly, the new findings suggest that the uncoupler mechanism does not play a key role in BDQ’s anti-mycobacterial activity.
机译:贝达喹啉(BDQ)通过干扰F-ATP合酶活性来抑制ATP的产生。 BDQ的两种作用机制已被广泛接受。直接机制涉及BDQ结合到酶的环上以阻止其旋转,从而抑制酶催化性αβ头基中的ATP合成。间接机制涉及BDQ将电子传输链中的电子传输与F-ATP合酶上的ATP合成解耦。在最近发现的第二种直接机制中,BDQ与酶的ε-亚基结合,破坏了其将环旋转连接到αβ头部的ATP合成的能力。但是,这种机制存在争议,因为该药物对分离的ε-亚基蛋白的结合亲和力适中,并且无法分离出ε-亚基中的自发抗性突变体。最近,新的,结构独特的BDQ类似物TBAJ-876被用作化学探针以重新研究BDQ的作用机理。在这篇评论中,我们首先总结关于BDQ的作用机制的发现,然后描述从TBAJ-876研究获得的新见解。 TBAJ-876研究确认-ring为靶标,同时也支持靶向ε-亚基的功能。令人惊讶的是,新发现表明,解偶联剂机制在BDQ的抗分枝杆菌活性中不发挥关键作用。

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