Lo Mei-Chu, Aulabaugh Ann, Jin Guixian, Cowling Rebecca, Bard Jonathan, Malamas Michael, Ellestad George
Biophysics/Enzymology-Chemical and Screening Sciences, Wyeth Research, Pearl River, NY 10965, USA.
Anal Biochem. 2004 Sep 1;332(1):153-9. doi: 10.1016/j.ab.2004.04.031.
The fluorescence-based thermal shift assay is a general method for identification of inhibitors of target proteins from compound libraries. Using an environmentally sensitive fluorescent dye to monitor protein thermal unfolding, the ligand-binding affinity can be assessed from the shift of the unfolding temperature (Delta Tm) obtained in the presence of ligands relative to that obtained in the absence of ligands. In this article, we report that the thermal shift assay can be conducted in an inexpensive, commercially available device for temperature control and fluorescence detection. The binding affinities obtained from thermal shift assays are compared with the binding affinities measured by isothermal titration calorimetry and with the IC(50) values from enzymatic assays. The potential pitfalls in the data analysis of thermal shift assays are also discussed.
基于荧光的热位移分析是一种从化合物库中鉴定靶蛋白抑制剂的通用方法。通过使用对环境敏感的荧光染料监测蛋白质的热变性,可以根据在存在配体时获得的变性温度变化(ΔTm)相对于不存在配体时获得的变化来评估配体结合亲和力。在本文中,我们报告热位移分析可以在一种廉价的、市售的用于温度控制和荧光检测的装置中进行。将热位移分析获得的结合亲和力与通过等温滴定量热法测量的结合亲和力以及酶促分析的IC50值进行比较。还讨论了热位移分析数据分析中的潜在陷阱。