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利用化学工具进行蛋白激酶结构与功能分析

Protein kinase structure and function analysis with chemical tools.

作者信息

Shen Kui, Hines Aliya C, Schwarzer Dirk, Pickin Kerry A, Cole Philip A

机构信息

Department of Pharmacology and Molecular Sciences, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Biochim Biophys Acta. 2005 Dec 30;1754(1-2):65-78. doi: 10.1016/j.bbapap.2005.08.020. Epub 2005 Sep 13.

Abstract

Protein kinases are the largest enzyme superfamily involved in cell signal transduction and represent therapeutic targets for a range of diseases. There have been intensive efforts from many labs to understand their catalytic mechanisms, discover inhibitors and discern their cellular functions. In this review, we will describe two approaches developed to analyze protein kinases: bisubstrate analog inhibition and phosphonate analog utilization. Both of these methods have been used in combination with the protein semisynthesis method expressed protein ligation to advance our understanding of kinase-substrate interactions and functional elucidation of phosphorylation. Previous work on the nature of the protein kinase mechanism suggests it follows a dissociative transition state. A bisubstrate analog was designed against the insulin receptor kinase to mimic the geometry of a dissociative transition state reaction coordinate distance. This bisubstrate compound proved to be a potent inhibitor against the insulin receptor kinase and occupied both peptide and nucleotide binding sites. Bisubstrate compounds with altered hydrogen bonding potential as well as varying spacers between the adenine and the peptide demonstrate the importance of the original design features. We have also shown that related bisubstrate analogs can be used to potently block serine/threonine kinases including protein kinase A. Since many protein kinases recognize folded protein substrates for efficient phosphorylation, it was advantageous to incorporate the peptide-ATP conjugates into protein structures. Using expressed protein ligation, a Src-ATP conjugate was produced and shown to be a high affinity ligand for the Csk tyrosine kinase. Nonhydrolyzable mimics of phosphoSer/phosphoTyr can be useful in examining the functionality of phosphorylation events. Using expressed protein ligation, we have employed phosphonomethylene phenylalanine and phosphonomethylene alanine to probe the phosphorylation of Tyr and Ser, respectively. These tools have permitted an analysis of the SH2-phosphatases (SHP1 and SHP2), revealing a novel intramolecular stimulation of catalytic activity mediated by the corresponding phosphorylation events. They have also been used to characterize the cellular regulation of the melatonin rhythm enzyme by phosphorylation.

摘要

蛋白激酶是参与细胞信号转导的最大酶超家族,是一系列疾病的治疗靶点。许多实验室都在集中精力研究其催化机制、发现抑制剂并识别其细胞功能。在本综述中,我们将描述用于分析蛋白激酶的两种方法:双底物类似物抑制法和膦酸酯类似物利用法。这两种方法都已与蛋白半合成方法(表达蛋白连接法)结合使用,以加深我们对激酶 - 底物相互作用的理解以及对磷酸化功能的阐释。先前关于蛋白激酶机制本质的研究表明它遵循解离过渡态。针对胰岛素受体激酶设计了一种双底物类似物,以模拟解离过渡态反应坐标距离的几何结构。这种双底物化合物被证明是胰岛素受体激酶的有效抑制剂,占据了肽和核苷酸结合位点。具有改变的氢键潜力以及腺嘌呤与肽之间不同间隔基团的双底物化合物证明了原始设计特征的重要性。我们还表明,相关的双底物类似物可用于有效阻断包括蛋白激酶A在内的丝氨酸/苏氨酸激酶。由于许多蛋白激酶识别折叠的蛋白底物以进行有效磷酸化,因此将肽 - ATP缀合物整合到蛋白结构中具有优势。使用表达蛋白连接法,制备了一种Src - ATP缀合物,并证明它是Csk酪氨酸激酶的高亲和力配体。磷酸丝氨酸/磷酸酪氨酸的不可水解模拟物可用于研究磷酸化事件的功能。使用表达蛋白连接法,我们分别使用膦亚甲基苯丙氨酸和膦亚甲基丙氨酸来探测酪氨酸和丝氨酸的磷酸化。这些工具使得对SH2 - 磷酸酶(SHP1和SHP2)进行分析成为可能,揭示了由相应磷酸化事件介导的催化活性的新型分子内刺激。它们还被用于表征褪黑素节律酶磷酸化的细胞调节。

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