主要促进者超家族
反平行(数学)
流出
结核分枝杆菌
运输机
功能(生物学)
抗药性
生物
化学
生物化学
遗传学
肺结核
基因
医学
病理
物理
量子力学
磁场
作者
Delin Li,Xiaokang Zhang,Yuanhang Yao,Xue Sun,Junqing Sun,Xiaomin Ma,Kai Yuan,Guijie Bai,Xuefei Pang,Rongmao Hua,Tianling Guo,Yuqian Mi,Lingzhi Wu,Jie Zhang,Yan Wu,Yingxia Liu,Peiyi Wang,Catherine C. L. Wong,Xiaowei Chen,Haixia Xiao,George F. Gao,Feng Gao
标识
DOI:10.1073/pnas.2412653121
摘要
EfpA, the first major facilitator superfamily (MFS) protein identified in Mycobacterium tuberculosis (Mtb), is an essential efflux pump implicated in resistance to multiple drugs. EfpA-inhibitors have been developed to kill drug-tolerant Mtb. However, the biological function of EfpA has not yet been elucidated. Here, we present the cryo-EM structures of EfpA complexed with lipids or the inhibitor BRD-8000.3 at resolutions of 2.9 Å and 3.4 Å, respectively. Unexpectedly, EfpA forms an antiparallel dimer. Functional studies reveal that EfpA is a lipid transporter and BRD-8000.3 inhibits its lipid transport activity. Intriguingly, the mutation V319F, known to confer resistance to BRD-8000.3, alters the expression level and oligomeric state of EfpA. Based on our results and the observation of other antiparallel dimers in the MFS family, we propose an antiparallel-function model of EfpA. Collectively, our work provides structural and functional insights into EfpA’s role in lipid transport and drug resistance, which would accelerate the development of antibiotics against this promising drug target.
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