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脂酰基辅酶 A 结合磺胺类化合物选择性抑制分枝杆菌脂酰基辅酶 A 脱氢酶。

Lipoamide channel-binding sulfonamides selectively inhibit mycobacterial lipoamide dehydrogenase.

机构信息

Department of Microbiology and Immunology and ‡Department of Pharmacology, Weill Cornell Medical College , New York, New York 10065, United States.

出版信息

Biochemistry. 2013 Dec 23;52(51):9375-84. doi: 10.1021/bi401077f. Epub 2013 Nov 26.

Abstract

Tuberculosis remains a global health emergency that calls for treatment regimens directed at new targets. Here we explored lipoamide dehydrogenase (Lpd), a metabolic and detoxifying enzyme in Mycobacterium tuberculosis (Mtb) whose deletion drastically impairs Mtb's ability to establish infection in the mouse. Upon screening more than 1.6 million compounds, we identified N-methylpyridine 3-sulfonamides as potent and species-selective inhibitors of Mtb Lpd affording >1000-fold selectivity versus the human homologue. The sulfonamides demonstrated low nanomolar affinity and bound at the lipoamide channel in an Lpd-inhibitor cocrystal. Their selectivity could be attributed, at least partially, to hydrogen bonding of the sulfonamide amide oxygen with the species variant Arg93 in the lipoamide channel. Although potent and selective, the sulfonamides did not enter mycobacteria, as determined by their inability to accumulate in Mtb to effective levels or to produce changes in intracellular metabolites. This work demonstrates that high potency and selectivity can be achieved at the lipoamide-binding site of Mtb Lpd, a site different from the NAD⁺/NADH pocket targeted by previously reported species-selective triazaspirodimethoxybenzoyl inhibitors.

摘要

结核病仍然是全球卫生紧急情况,需要针对新目标制定治疗方案。在这里,我们研究了脂酰脱氢酶(Lpd),它是结核分枝杆菌(Mtb)中的一种代谢和解毒酶,其缺失极大地削弱了 Mtb 在小鼠中建立感染的能力。在筛选了超过 160 万个化合物后,我们发现 N-甲基吡啶-3-磺酰胺类化合物是 Mtb Lpd 的有效且具有种属选择性的抑制剂,对人同源物的选择性超过 1000 倍。磺酰胺类化合物具有低纳摩尔亲和力,并在 Lpd 抑制剂共晶中结合在脂酰通道上。它们的选择性至少部分归因于磺酰胺酰胺氧与脂酰通道中物种变异的 Arg93 的氢键相互作用。尽管磺酰胺类化合物具有很强的选择性和选择性,但它们不能进入分枝杆菌,这是因为它们无法在 Mtb 中积累到有效水平或产生细胞内代谢物的变化。这项工作表明,可以在 Mtb Lpd 的脂酰结合部位达到高的效力和选择性,该部位与先前报道的具有种属选择性的三氮唑螺二氧杂芑基苯甲酰抑制剂靶向的 NAD⁺/NADH 口袋不同。

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