Center for Pharmaceutical Biotechnology, University of Illinois at Chicago, Chicago, IL 60607, USA.
Anal Biochem. 2013 Oct 1;441(1):87-94. doi: 10.1016/j.ab.2013.05.035. Epub 2013 Jun 13.
Dihydroorotase (DHOase) is the third enzyme in the de novo pyrimidine biosynthesis pathway and is a potential new antibacterial drug target. No target-based high-throughput screening (HTS) assay for this enzyme has been reported to date. Here, we optimized two colorimetric-based enzymatic assays that detect the ureido moiety of the DHOase substrate, carbamyl-aspartate (Ca-asp). Each assay was developed in a 40-μl assay volume using 384-well plates with a different color mix, diacetylmonoxime (DAMO)-thiosemicarbazide (TSC) or DAMO-antipyrine. The sensitivity and color interference of both color mixes were compared in the presence of common HTS buffer additives, including dimethyl sulfoxide, reducing agents, detergents, and bovine serum albumin. DAMO-TSC (Z'-factors 0.7-0.8) was determined to be superior to DAMO-antipyrine (Z'-factors 0.5-0.6) with significantly less variability within replicates. An HTS pilot screening with 29,552 compounds from four structurally diverse libraries confirmed the quality of our newly optimized colorimetric assay with DAMO-TSC. This robust method has no heating requirement, which was the main obstacle to applying previous assays to HTS. More important, this well-optimized HTS assay for DHOase, the first of its kind, should make it possible to screen large-scale compound libraries to develop new inhibitors against any enzymes that produce ureido functional groups.
二氢乳清酸酶(DHOase)是从头嘧啶生物合成途径的第三酶,是一种潜在的新的抗菌药物靶标。迄今为止,尚未报道针对该酶的基于靶标的高通量筛选(HTS)测定法。在这里,我们优化了两种基于比色的酶测定法,用于检测 DHOase 底物脲基部分的二乙酰单肟(DAMO)-硫代半卡巴肼(TSC)或 DAMO-安替比林。每个测定法都在 40μl 测定体积中使用 384 孔板开发,使用不同的颜色组合,即二乙酰单肟(DAMO)-硫代半卡巴肼(TSC)或 DAMO-安替比林。在存在常见 HTS 缓冲添加剂的情况下,比较了两种颜色混合物的灵敏度和颜色干扰,包括二甲基亚砜,还原剂,洗涤剂和牛血清白蛋白。 DAMO-TSC(Z'因子 0.7-0.8)被确定优于 DAMO-安替比林(Z'因子 0.5-0.6),并且在重复内具有明显较小的变异性。使用来自四个结构不同文库的 29,552 种化合物进行的 HTS 初步筛选证实了我们新优化的带有 DAMO-TSC 的比色测定法的质量。该强大的方法不需要加热,这是将先前的测定法应用于 HTS 的主要障碍。更重要的是,这种针对 DHOase 的经过良好优化的 HTS 测定法,这是首例,应该可以筛选大规模的化合物文库,以开发针对产生脲基功能团的任何酶的新型抑制剂。