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分枝杆菌MenJ的底物类似物研究:截短和部分饱和的甲基萘醌

Investigating Substrate Analogues for Mycobacterial MenJ: Truncated and Partially Saturated Menaquinones.

作者信息

Koehn Jordan T, Beuning Cheryle N, Peters Benjamin J, Dellinger Sara K, Van Cleave Cameron, Crick Dean C, Crans Debbie C

出版信息

Biochemistry. 2019 Mar 26;58(12):1596-1615. doi: 10.1021/acs.biochem.9b00007. Epub 2019 Mar 6.

Abstract

Menaquinones (MKs) are essential for electron transport in prokaryotes, and importantly, partially saturated MKs represent a novel virulence factor. However, little is known regarding how the degree of saturation in the isoprenyl side chain influences conformation or quinone redox potential. MenJ is an enzyme that selectively reduces the second isoprene unit on MK-9 and is contextually essential for the survival of Mycobacterium tuberculosis in J774A.1 macrophage-like cells, suggesting that MenJ may be a conditional drug target for pathogenic mycobacteria. Therefore, fundamental information about the properties of this system is important, and we synthesized the simplest MKs, unsaturated MK-1 and the saturated analogue, MK-1(H). Using two-dimensional nuclear magnetic resonance spectroscopy, we established that MK-1 and MK-1(H) adopted similar folded-extended conformations (i.e., the isoprenyl side chain folds upward) in each solvent examined but the folded-extended conformations differed slightly between organic solvents. Saturation of the isoprenyl side chain slightly altered the MK-1 analogue conformation in each solvent. We used molecular mechanics to illustrate the MK-1 analogue conformations. The measured quinone redox potentials of MK-1 and MK-1(H) differed between organic solvents (presumably due to differences in dielectric constants), and remarkably, an ∼20 mV semiquinone redox potential difference was observed between MK-1 and MK-1(H) in pyridine, acetonitrile, and dimethyl sulfoxide, demonstrating that the degree of saturation in the isoprenyl side chain of MK-1 influences the quinone redox potential. Finally, MK-1 and MK-1(H) interacted with Langmuir phospholipid monolayers and Aerosol-OT reverse micelle (RM) model membrane interfaces, where MK-1 adopted a slightly different folded conformation within the RM model membrane interface.

摘要

甲基萘醌(MKs)对于原核生物中的电子传递至关重要,重要的是,部分饱和的MKs代表一种新型毒力因子。然而,关于异戊二烯侧链的饱和度如何影响构象或醌氧化还原电位,人们知之甚少。MenJ是一种酶,它选择性地还原MK-9上的第二个异戊二烯单元,并且在J774A.1巨噬细胞样细胞中对于结核分枝杆菌的存活在特定环境下至关重要,这表明MenJ可能是致病性分枝杆菌的一个条件性药物靶点。因此,关于该系统性质的基础信息很重要,我们合成了最简单的MKs,不饱和的MK-1及其饱和类似物MK-1(H)。使用二维核磁共振光谱,我们确定MK-1和MK-1(H)在每种检测的溶剂中都采用了相似的折叠-伸展构象(即异戊二烯侧链向上折叠),但在有机溶剂之间,折叠-伸展构象略有不同。异戊二烯侧链的饱和在每种溶剂中略微改变了MK-1类似物的构象。我们使用分子力学来说明MK-1类似物的构象。在有机溶剂中,MK-1和MK-1(H)测得的醌氧化还原电位不同(可能是由于介电常数的差异),并且值得注意的是,在吡啶、乙腈和二甲亚砜中,MK-1和MK-1(H)之间观察到约20 mV的半醌氧化还原电位差异,这表明MK-1异戊二烯侧链的饱和度影响醌氧化还原电位。最后,MK-1和MK-1(H)与朗缪尔磷脂单层和气溶胶-OT反胶束(RM)模型膜界面相互作用时,MK-1在RM模型膜界面内采用了略有不同的折叠构象。

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