Yasgar Adam, Foley Timothy L, Jadhav Ajit, Inglese James, Burkart Michael D, Simeonov Anton
NIH Chemical Genomics Center, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD 20892-3370, USA.
Mol Biosyst. 2010 Feb;6(2):365-75. doi: 10.1039/b913291k. Epub 2009 Oct 13.
Surfactin-type phosphopantetheinyl transferases (Sfp-PPTases) are responsible for modifying type I polyketide and non-ribosomal peptide synthases of prokaryotes and have been implicated in the activation of a variety of pathogen-associated virulence factors. As such, inhibitors of this enzyme class represent enticing leads for antibiotic development and can serve as tools in studies of bacterial metabolism. Currently, no small molecule inhibitors of Sfp-PPTase are known, highlighting the need for efficient methods for PPTase inhibitor identification and development. Herein, we present the design and implementation of a robust and miniaturized high-throughput kinetic assay for inhibitors of Sfp-PPTase using the substrate combination of rhodamine-labeled coenzyme A and Black Hole Quencher-2 labeled consensus acceptor peptide YbbR. Upon PPTase-catalyzed transfer of the rhodamine-labeled phosphopantetheinyl arm onto the acceptor peptide, the fluorescent donor and quencher are covalently joined and the fluorescence signal is reduced. This assay was miniaturized to a low 4 microL volume in 1536-well format and was used to screen the library of pharmacologically active compounds (LOPAC(1280)). Top inhibitors identified by the screen were further characterized in secondary assays, including protein phosphopantetheinylation detected by gel electrophoresis. The present assay enables the screening of large compound libraries against Sfp-PPTase in a robust and automated fashion and is applicable to designing assays for related transferase enzymes.
表面活性素型磷酸泛酰巯基乙胺基转移酶(Sfp-PPTases)负责修饰原核生物的I型聚酮合酶和非核糖体肽合成酶,并与多种病原体相关毒力因子的激活有关。因此,这类酶的抑制剂是抗生素开发的诱人先导物,可作为细菌代谢研究的工具。目前,尚无已知的Sfp-PPTase小分子抑制剂,这突出表明需要高效的方法来鉴定和开发PPTase抑制剂。在此,我们介绍了一种稳健且小型化的高通量动力学分析方法的设计与实施,该方法用于筛选Sfp-PPTase抑制剂,使用的底物组合是罗丹明标记的辅酶A和黑洞猝灭剂-2标记的共有受体肽YbbR。在PPTase催化下,将罗丹明标记的磷酸泛酰巯基乙胺臂转移到受体肽上后,荧光供体和猝灭剂共价结合,荧光信号减弱。该分析方法被小型化为1536孔板形式的低至4微升体积,并用于筛选药理活性化合物文库(LOPAC(1280))。通过筛选鉴定出的顶级抑制剂在二级分析中进一步表征,包括通过凝胶电泳检测蛋白质磷酸泛酰巯基乙胺化。本分析方法能够以稳健且自动化的方式针对Sfp-PPTase筛选大型化合物文库,适用于设计相关转移酶的分析方法。