Stains Cliff I, Tedford Nathan C, Walkup Traci C, Luković Elvedin, Goguen Brenda N, Griffith Linda G, Lauffenburger Douglas A, Imperiali Barbara
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Chem Biol. 2012 Feb 24;19(2):210-7. doi: 10.1016/j.chembiol.2011.11.012.
Protein kinases catalyze protein phosphorylation and thereby control the flow of information through signaling cascades. Currently available methods for concomitant assessment of the enzymatic activities of multiple kinases in complex biological samples rely on indirect proxies for enzymatic activity, such as posttranslational modifications to protein kinases. Our laboratories have recently described a method for directly quantifying the enzymatic activity of kinases in unfractionated cell lysates using substrates containing a phosphorylation-sensitive unnatural amino acid termed CSox, which can be monitored using fluorescence. Here, we demonstrate the utility of this method using a probe set encompassing p38α, MK2, ERK1/2, Akt, and PKA. This panel of chemosensors provides activity measurements of individual kinases in a model of skeletal muscle differentiation and can be readily used to generate individualized kinase activity profiles for tissue samples from clinical cancer patients.
蛋白激酶催化蛋白质磷酸化,从而通过信号级联反应控制信息流。目前用于同时评估复杂生物样品中多种激酶酶活性的方法依赖于酶活性的间接指标,如蛋白激酶的翻译后修饰。我们实验室最近描述了一种方法,可使用含有磷酸化敏感非天然氨基酸CSox的底物,直接定量未分级细胞裂解物中激酶的酶活性,该底物可通过荧光进行监测。在此,我们使用包含p38α、MK2、ERK1/2、Akt和PKA的探针集展示了该方法的实用性。这组化学传感器可在骨骼肌分化模型中提供单个激酶的活性测量结果,并可轻松用于生成临床癌症患者组织样本的个性化激酶活性谱。