Department of Molecular Cellular and Developmental Biology, Yale University, 219 Prospect Street, New Haven, CT 06511, USA.
ACS Chem Biol. 2012 Dec 21;7(12):2055-63. doi: 10.1021/cb300453k. Epub 2012 Oct 11.
Small Molecule Microarrays (SMMs) represent a general platform for screening small molecule-protein interactions independent of functional inhibition of target proteins. In an effort to increase the scope and utility of SMMs, we have modified the SMM screening methodology to increase assay sensitivity and facilitate multiplex screening. Fusing target proteins to the HaloTag protein allows us to covalently prelabel fusion proteins with fluorophores, leading to increased assay sensitivity and an ability to conduct multiplex screens. We use the interaction between FKBP12 and two ligands, rapamycin and ARIAD's "bump" ligand, to show that the HaloTag-based SMM screening methodology significantly increases assay sensitivity. Additionally, using wild type FKBP12 and the FKBP12 F36V mutant, we show that prelabeling various protein isoforms with different fluorophores allows us to conduct multiplex screens and identify ligands to a specific isoform. Finally, we show this multiplex screening technique is capable of identifying ligands selective for a specific PTP1B isoform using a 20,000 compound screening deck.
小分子微阵列(SMMs)代表了一种独立于靶蛋白功能抑制筛选小分子-蛋白相互作用的通用平台。为了扩大 SMM 的应用范围和实用性,我们修改了 SMM 筛选方法,以提高检测灵敏度并促进多重筛选。将靶蛋白融合到 HaloTag 蛋白上,使我们能够用荧光染料共价标记融合蛋白,从而提高检测灵敏度并能够进行多重筛选。我们使用 FKBP12 与两种配体 rapamycin 和 ARIAD 的“凸起”配体之间的相互作用来表明基于 HaloTag 的 SMM 筛选方法显著提高了检测灵敏度。此外,使用野生型 FKBP12 和 FKBP12 F36V 突变体,我们表明用不同荧光染料预标记各种蛋白异构体,使我们能够进行多重筛选并鉴定针对特定异构体的配体。最后,我们表明这种多重筛选技术能够使用 20,000 种化合物筛选库鉴定针对特定 PTP1B 异构体的配体。