Structure of the mycobacterial ATP synthase Fo rotor ring in complex with the anti-TB drug bedaquiline

被引:238
作者
Preiss, Laura [1 ]
Langer, Julian D. [2 ]
Yildiz, Ozkan [1 ]
Eckhardt-Strelau, Luise [1 ]
Guillemont, Jerome E. G. [3 ]
Koul, Anil [4 ]
Meier, Thomas [1 ]
机构
[1] Max Planck Inst Biophys, Dept Struct Biol, Max von Laue Str 3, D-60438 Frankfurt, Germany
[2] Max Planck Inst Biophys, Dept Mol Membrane Biol, D-60438 Frankfurt, Germany
[3] Johnson & Johnson Pharmaceut Res & Dev, F-27106 Val De Reuil, France
[4] Johnson & Johnson, Dept Resp Infect, Infect Dis & Vaccines Grp, Janssen Res & Dev, B-2340 Beerse, Belgium
关键词
HIGH-RESOLUTION STRUCTURE; BINDING-SITE; TUBERCULOSIS; ROTATION; SUBUNIT; MECHANISM; SMEGMATIS; PROTEINS; MOLECULE; SYMMETRY;
D O I
10.1126/sciadv.1500106
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Multidrug-resistant tuberculosis (MDR-TB) is more prevalent today than at any other time in human history. Bedaquiline (BDQ), a novel Mycobacterium-specific adenosine triphosphate (ATP) synthase inhibitor, is the first drug in the last 40 years to be approved for the treatment of MDR-TB. This bactericidal compound targets the membrane-embedded rotor (c-ring) of the mycobacterial ATP synthase, a key metabolic enzyme required for ATP generation. We report the x-ray crystal structures of a mycobacterial c9 ring without and with BDQ bound at 1.55- and 1.7-A degrees resolution, respectively. The structures and supporting functional assays reveal how BDQ specifically interacts with the rotor ring via numerous interactions and thereby completely covers the c-ring's ionbinding sites. This prevents the rotor ring from acting as an ion shuttle and stalls ATP synthase operation. The structures explain how diarylquinoline chemicals specifically inhibit the mycobacterial ATP synthase and thus enable structure-based drug design of next-generation ATP synthase inhibitors against Mycobacterium tuberculosis and other bacterial pathogens.
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页数:8
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