Ren Jinhong, Mistry Tina L, Su Pin-Chih, Mehboob Shahila, Demissie Robel, Fung Leslie Wo-Mei, Ghosh Arun K, Johnson Michael E
Center for Biomolecular Sciences, University of Illinois at Chicago, 900 S. Ashland Ave, Chicago, IL 60607, USA.
Novalex Therapeutics, Inc., 2242 W Harrison, Chicago, IL 60612, USA.
Bioorg Med Chem Lett. 2018 Jun 15;28(11):2074-2079. doi: 10.1016/j.bmcl.2018.04.052. Epub 2018 Apr 22.
We have previously reported benzimidazole-based compounds to be potent inhibitors of FabI for Francisella tularensis (FtFabI), making them promising antimicrobial hits. Optically active enantiomers exhibit markedly differing affinities toward FtFabI. The IC of benzimidazole (-)-1 is ∼100× lower than the (+)-enantiomer, with similar results for the 2 enantiomers. Determining the absolute configuration for these optical compounds and elucidating their binding modes is important for further design. Electronic circular dichroism (ECD) quantum calculations have become important in determining absolute configurations of optical compounds. We determined the absolute configuration of (-)/(+)-1 and (-)/(+)-2 by comparing experimental spectra and theoretical density functional theory (DFT) simulations of ECD spectra at the B3LYP/6-311+G(2d, p) level using Gaussian09. Comparison of experimental and calculated ECD spectra indicates that the S configuration corresponds to the (-)-rotation for both compounds 1 and 2, while the R configuration corresponds to the (+)-rotation. Further, molecular dynamics simulations and MM-GBSA binding energy calculations for these two pairs of enantiomers with FtFabI show much tighter binding MM-GBSA free energies for S-1 and S-2 than for their enantiomers, R-1 and R-2, consistent with the S configuration being the more active one, and with the ECD determination of the S configuration corresponding to (-) and the R configuration corresponding to (+). Thus, our computational studies allow us to assign (-) to (S)- and (+) to (R)- for compounds 1 and 2, and to further evaluate structural changes to improve efficacy.
我们之前曾报道基于苯并咪唑的化合物是土拉弗朗西斯菌FabI(FtFabI)的有效抑制剂,使其成为有前景的抗菌活性物质。旋光活性对映体对FtFabI表现出明显不同的亲和力。苯并咪唑(-)-1的IC50比(+)-对映体低约100倍,两种对映体的结果相似。确定这些光学化合物的绝对构型并阐明其结合模式对于进一步设计很重要。电子圆二色性(ECD)量子计算在确定光学化合物的绝对构型方面已变得很重要。我们使用Gaussian09,通过比较在B3LYP/6-311+G(2d,p)水平下ECD光谱的实验光谱和理论密度泛函理论(DFT)模拟,确定了(-)/(+)-1和(-)/(+)-2的绝对构型。实验和计算的ECD光谱比较表明,S构型对应于化合物1和2的(-)-旋转,而R构型对应于(+)-旋转。此外,这两对FtFabI对映体的分子动力学模拟和MM-GBSA结合能计算表明,S-1和S-2的MM-GBSA自由能比对映体R-1和R-2的结合紧密得多,这与S构型是更具活性的构型一致,并且ECD确定的S构型对应于(-),R构型对应于(+)。因此,我们的计算研究使我们能够将化合物1和2的(-)指定为(S)-,将(+)指定为(R)-,并进一步评估结构变化以提高疗效。