Siricilla Shajila, Mitachi Katsuhiko, Skorupinska-Tudek Karolina, Swiezewska Ewa, Kurosu Michio
Department of Pharmaceutical Sciences, College of Pharmacy, University of Tennessee Health Science Center, 881 Madison Avenue, Memphis, TN 38163-0001, United States.
Department of Lipid Biochemistry, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5a, 02-106 Warszawa, Poland.
Anal Biochem. 2014 Sep 15;461:36-45. doi: 10.1016/j.ab.2014.05.018. Epub 2014 Jun 2.
Translocase I (MraY/MurX) is an essential enzyme in growth of the vast majority of bacteria that catalyzes the transformation from UDP-MurNAc-pentapeptide (Park's nucleotide) to prenyl-MurNAc-pentapeptide (lipid I), the first membrane-anchored peptidoglycan precursor. MurX has received considerable attention in the development of new tuberculosis (TB) drugs due to the fact that the MurX inhibitors kill exponentially growing Mycobacterium tuberculosis (Mtb) much faster than clinically used TB drugs. Lipid I isolated from Mtb contains the C50-prenyl unit that shows very poor water solubility; thus, this chemical characteristic of lipid I renders MurX enzyme assays impractical for screening and lacks reproducibility of the enzyme assays. We have established a scalable chemical synthesis of Park's nucleotide-N(ε)-dansylthiourea 2 that can be used as a MurX enzymatic substrate to form lipid I analogues. In our investigation of the minimum structure requirement of the prenyl phosphate in the MraY/MurX-catalyzed lipid I analogue synthesis with 2, we found that neryl phosphate (C10 phosphate) can be recognized by MraY/MurX to generate the water-soluble lipid I analogue in quantitative yield under the optimized conditions. Here, we report a rapid and robust analytical method for quantifying MraY/MurX inhibitory activity of library molecules.
转位酶I(MraY/MurX)是绝大多数细菌生长过程中的一种必需酶,它催化从UDP-胞壁酰五肽(帕克核苷酸)向异戊烯基-胞壁酰五肽(脂质I)的转化,脂质I是第一种膜锚定的肽聚糖前体。由于MurX抑制剂杀死指数生长的结核分枝杆菌(Mtb)的速度比临床使用的抗结核药物快得多,因此MurX在新型结核病(TB)药物的研发中受到了广泛关注。从Mtb中分离出的脂质I含有C50异戊烯基单元,其水溶性很差;因此,脂质I的这种化学特性使得MurX酶活性测定法在筛选中不实用,并且缺乏酶活性测定的可重复性。我们已经建立了一种可扩展的帕克核苷酸-N(ε)-丹磺酰硫脲2的化学合成方法,该化合物可作为MurX酶的底物来形成脂质I类似物。在我们对MraY/MurX催化用2合成脂质I类似物过程中异戊烯基磷酸的最小结构要求的研究中,我们发现异戊烯基磷酸(C10磷酸)可以被MraY/MurX识别,在优化条件下以定量产率生成水溶性脂质I类似物。在此,我们报告一种快速且可靠的分析方法,用于定量文库分子对MraY/MurX的抑制活性。