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JAK2和JAK3激酶结构域非磷酸化及磷酸化状态的表达、纯化、特性鉴定与结晶

Expression, purification, characterization and crystallization of non- and phosphorylated states of JAK2 and JAK3 kinase domain.

作者信息

Hall Troii, Emmons Thomas L, Chrencik Jill E, Gormley Jennifer A, Weinberg Robin A, Leone Joseph W, Hirsch Jeffrey L, Saabye Matthew J, Schindler John F, Day Jacqueline E, Williams Jennifer M, Kiefer James R, Lightle Sandra A, Harris Melissa S, Guru Siradanahalli, Fischer H David, Tomasselli Alfredo G

机构信息

Pfizer Inc., Global Research and Development, St. Louis Laboratories, St. Louis, MO 63017-1732, USA.

出版信息

Protein Expr Purif. 2010 Jan;69(1):54-63. doi: 10.1016/j.pep.2009.09.011. Epub 2009 Sep 23.

Abstract

Janus-associated kinases (JAKs) play critical roles in cytokine signaling, and have emerged as viable therapeutic targets in inflammation and oncology related diseases. To date, targeting JAK proteins with highly selective inhibitor compounds have remained elusive. We have expressed the active kinase domains for both JAK2 and JAK3 and devised purification protocols to resolve the non-, mono- (Y1007) and diphosphorylated (Y1007 and Y1008) states of JAK2 and non- and monophosphorylated states of JAK3 (Y980). An optimal purified protein yield of 20, 29 and 69mg per 20L cell culture was obtained for the three JAK2 forms, respectively, and 12.2 and 2.3mg per 10L fermentation for the two JAK3 forms allowing detailed biochemical and biophysical studies. To monitor the purification process we developed a novel HPLC activity assay where a sequential order of phosphorylation was observed whereby the first tyrosine residue was completely phosphorylated prior to phosphorylation of the tandem tyrosine residue. A Caliper-based microfluidics assay was used to determine the kinetic parameters (K(m) and k(cat)) for each phosphorylated state, showing that monophosphorylated (Y1007) JAK2 enzyme activity increased 9-fold over that of the nonphosphorylated species, and increased an additional 6-fold for the diphosphorylated (Y1007/Y1008) species, while phosphorylation of JAK3 resulted in a negligible increase in activity. Moreover, crystal structures have been generated for each isolated state of JAK2 and JAK3 with resolutions better than 2.4A. The generation of these reagents has enabled kinetic and structural characterization to inform the design of potent and selective inhibitors of the JAK family.

摘要

Janus 相关激酶(JAKs)在细胞因子信号传导中发挥关键作用,并已成为炎症和肿瘤相关疾病中可行的治疗靶点。迄今为止,用高度选择性抑制剂化合物靶向 JAK 蛋白仍然难以实现。我们表达了 JAK2 和 JAK3 的活性激酶结构域,并设计了纯化方案,以解析 JAK2 的非磷酸化、单磷酸化(Y1007)和双磷酸化(Y1007 和 Y1008)状态以及 JAK3(Y980)的非磷酸化和单磷酸化状态。三种 JAK2 形式每 20L 细胞培养物分别获得了 20mg、29mg 和 69mg 的最佳纯化蛋白产量,两种 JAK3 形式每 10L 发酵分别获得了 12.2mg 和 2.3mg 的产量,这使得能够进行详细的生化和生物物理研究。为了监测纯化过程,我们开发了一种新型的 HPLC 活性测定法,观察到磷酸化的顺序,即第一个酪氨酸残基在串联酪氨酸残基磷酸化之前完全磷酸化。基于 Caliper 的微流控测定法用于确定每种磷酸化状态的动力学参数(K(m) 和 k(cat)),结果表明单磷酸化(Y1007)的 JAK2 酶活性比非磷酸化物种增加了 9 倍,双磷酸化(Y1007/Y1008)物种又增加了 6 倍,而 JAK3 的磷酸化导致活性增加可忽略不计。此外,已经为 JAK2 和 JAK3 的每种分离状态生成了分辨率优于 2.4A 的晶体结构。这些试剂的产生使得能够进行动力学和结构表征,为 JAK 家族强效和选择性抑制剂的设计提供信息。

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