Park Hankum, Ha Jaeyoung, Koo Ja Young, Park Jongmin, Park Seung Bum
Department of Biophysics and Chemical Biology , Seoul National University , Seoul - 08826 , Korea . Email:
CRI Center for Chemical Proteomics , Department of Chemistry , Seoul National University , Seoul - 08826 , Korea.
Chem Sci. 2017 Feb 1;8(2):1127-1133. doi: 10.1039/c6sc03238a. Epub 2016 Sep 22.
Target engagement is a prerequisite for the therapeutic effects of bioactive small molecules, and unbiased identification of their target proteins can facilitate drug discovery and chemical biology research. Structural modifications of bioactive natural products for target identification exhibit potential limitations such as synthetic difficulties, limited supplies from natural sources, and loss of original efficacy. Herein, we developed a label-free method for proteome-wide target identification using in-gel fluorescence difference caused by thermal stability shift, namely TS-FITGE. Quantitative intra-gel image analysis of each protein spot revealed target proteins with shifted thermal stability upon drug engagement, and plotting of melting curves by inter-gel analysis confirmed the positive targets. We demonstrated the robustness and applicability of the TS-FITGE method by identifying target proteins, including membrane-anchored proteins, of complex bioactive compounds. Furthermore, we identified and functionally validated nucleophosmin as a novel target protein of hordenine, a natural product upregulator of translation.
靶点结合是生物活性小分子发挥治疗作用的前提条件,而无偏向性地鉴定其靶蛋白有助于药物发现和化学生物学研究。通过对生物活性天然产物进行结构修饰来鉴定靶点存在潜在局限性,如合成困难、天然来源供应有限以及原始功效丧失等问题。在此,我们开发了一种基于热稳定性变化引起的凝胶内荧光差异的无标记方法,用于全蛋白质组范围的靶点鉴定,即TS-FITGE。对每个蛋白质点进行凝胶内定量图像分析,可揭示药物作用后热稳定性发生变化的靶蛋白,通过凝胶间分析绘制熔解曲线可确认阳性靶点。我们通过鉴定复杂生物活性化合物的靶蛋白(包括膜锚定蛋白),证明了TS-FITGE方法的稳健性和适用性。此外,我们鉴定并在功能上验证了核磷蛋白是大麦芽碱(一种翻译上调的天然产物)的新型靶蛋白。