Lee Sheeyong, Duhé Roy J
Department of Pharmacology and Toxicology, University of Mississippi Medical Center, 2500 North State St, Jackson, MS 39216, USA.
J Biomed Sci. 2006 Nov;13(6):773-86. doi: 10.1007/s11373-006-9111-9. Epub 2006 Sep 14.
Janus kinase 2 (JAK2) is an essential intracellular signal transducer for numerous cytokines and hormones. To examine how JAK2 structural modifications can affect cellular physiology, we created expression vectors for chimeric proteins containing an enhanced green fluorescent protein (EGFP) fused to rat JAK2 (EGFP/rJAK2), and a kinase-inactive variant, EGFP/rJAK2(K882E). The properties of EGFP/rJAK2 were examined following transient transfection of COS-7 cells. EGFP/rJAK2 was expressed throughout the cell, and was found in subcellular membrane, cytosolic and nuclear fractions. Interestingly, EGFP/rJAK2 phosphorylated other proteins in situ without additional cytokine stimulation. Furthermore, despite a much higher level of tyrosine phosphorylation arising from in situ autophosphorylation, the in vitro radiolabelling autokinase activity of EGFP/rJAK2 was significantly less than that of the endogenous JAK2. These results reveal a technical limitation of the application of the "conventional" in vitro radiolabelling autokinase assay to hyperphosphorylated forms of the enzyme and illustrate the potential weaknesses in individual assays commonly used to determine JAK2's enzymatic activity and subcellular distribution. We also suggest that the EGFP/rJAK2 model can be very useful in studying JAK2-related cancers, because its ubiquitous distribution and abnormal constitutive hyperphosphorylation may distinguish it from the cytokine-regulated, membrane-proximal form of JAK2 associated with normal physiology.
Janus激酶2(JAK2)是众多细胞因子和激素必不可少的细胞内信号转导分子。为了研究JAK2结构修饰如何影响细胞生理学,我们构建了嵌合蛋白的表达载体,该嵌合蛋白包含与大鼠JAK2融合的增强型绿色荧光蛋白(EGFP)(EGFP/rJAK2)以及激酶失活变体EGFP/rJAK2(K882E)。在COS-7细胞瞬时转染后检测了EGFP/rJAK2的特性。EGFP/rJAK2在整个细胞中表达,并存在于亚细胞膜、胞质和核组分中。有趣的是,EGFP/rJAK2在没有额外细胞因子刺激的情况下能原位磷酸化其他蛋白。此外,尽管原位自磷酸化产生的酪氨酸磷酸化水平要高得多,但EGFP/rJAK2的体外放射性标记自激酶活性明显低于内源性JAK2。这些结果揭示了将“传统”体外放射性标记自激酶测定应用于该酶的过度磷酸化形式时的技术局限性,并说明了常用于测定JAK2酶活性和亚细胞分布的各个测定方法中潜在的弱点。我们还认为,EGFP/rJAK2模型在研究JAK2相关癌症方面可能非常有用,因为其普遍分布和异常的组成性过度磷酸化可能使其与正常生理状态下与细胞因子调节的、膜近端形式的JAK2区分开来。