Department of Chemistry and Biochemistry, Southern Illinois University, Carbondale, IL 62901, USA.
J Fluoresc. 2013 Sep;23(5):881-8. doi: 10.1007/s10895-013-1194-x. Epub 2013 Apr 11.
Understanding molecular interactions is critical to understanding most biological mechanisms of cells and organisms. In the case of small molecule-protein interactions, many molecules have significant biological activity through interactions with unknown target proteins and by unknown modes of action. Identifying these target proteins is of significant importance and ongoing work in our laboratories is developing a technique termed Dynamic Isoelectric Anisotropy Binding Ligand Assay (DIABLA) to meet this need. Work presented in this manuscript aims to characterize the fundamental parameters affecting the use of fluorescence anisotropy to detect target proteins for a given ligand. Emphasis is placed on evaluating the use of fluorescence anisotropy as a detection mechanism, including optimization factors that affect the protein detection limit. Effects of ligand concentration, pH, and nonspecific binding are also examined.
理解分子相互作用对于理解细胞和生物体的大多数生物学机制至关重要。在小分子-蛋白质相互作用的情况下,许多分子通过与未知靶蛋白的相互作用以及未知的作用方式具有显著的生物活性。鉴定这些靶蛋白非常重要,我们实验室正在开展一项名为动态等电各向异性结合配体分析(DIABLA)的技术,以满足这一需求。本文介绍的工作旨在确定影响使用荧光各向异性检测特定配体靶蛋白的基本参数。重点评估荧光各向异性作为检测机制的应用,包括影响蛋白质检测限的优化因素。还研究了配体浓度、pH 值和非特异性结合的影响。