Auld Douglas S, Zhang Ya-Qin, Southall Noel T, Rai Ganesha, Landsman Marc, MacLure Jennifer, Langevin Daniel, Thomas Craig J, Austin Christopher P, Inglese James
NIH Chemical Genomics Center, National Institutes of Health, Bethesda, Maryland 20892-3370, USA.
J Med Chem. 2009 Mar 12;52(5):1450-8. doi: 10.1021/jm8014525.
We measured the "druggability" of the ATP-dependent luciferase derived from the firefly Photuris pennsylvanica that was optimized using directed evolution (Ultra-Glo, Promega). Quantitative high-throughput screening (qHTS) was used to determine IC(50)s of 198899 samples against a formulation of Ultra-Glo luciferase (Kinase-Glo). We found that only 0.1% of the Kinase-Glo inhibitors showed an IC(50) < 10 microM compared to 0.9% found from a previous qHTS against the firefly luciferase from Photinus pyralis (lucPpy). Further, the maximum affinity identified in the lucPpy qHTS was 50 nM, while for Kinase-Glo this value increased to 600 nM. Compounds with interactions stretching outside the luciferin binding pocket were largely lost with Ultra-Glo luciferase. Therefore, Ultra-Glo luciferase will show less compound interference when used as an ATP sensor compared to lucPpy. This study demonstrates the power of large-scale quantitative analysis of structure-activity relationships (>100K compounds) in addressing important questions such as a target's druggability.
我们测量了通过定向进化优化的源自宾夕法尼亚 Photuris 萤火虫的 ATP 依赖性荧光素酶(Ultra-Glo,Promega)的“可成药特性”。使用定量高通量筛选(qHTS)来确定 198899 个样品针对 Ultra-Glo 荧光素酶制剂(Kinase-Glo)的半数抑制浓度(IC50)。我们发现,与之前针对 Photinus pyralis 萤火虫荧光素酶(lucPpy)进行的 qHTS 中发现的 0.9%相比,Kinase-Glo 抑制剂中只有 0.1%的 IC50 < 10 μM。此外,在 lucPpy qHTS 中确定的最大亲和力为 50 nM,而对于 Kinase-Glo,该值增加到 600 nM。与 Ultra-Glo 荧光素酶结合时,那些与荧光素结合口袋外存在相互作用的化合物大多会消失。因此,与 lucPpy 相比,Ultra-Glo 荧光素酶用作 ATP 传感器时显示出的化合物干扰更少。这项研究证明了大规模定量分析构效关系(>100K 化合物)在解决诸如靶点可成药特性等重要问题方面的作用。