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糖原合酶激酶3对肿瘤抑制因子pVHL的引发依赖性磷酸化及调控

Priming-dependent phosphorylation and regulation of the tumor suppressor pVHL by glycogen synthase kinase 3.

作者信息

Hergovich Alexander, Lisztwan Joanna, Thoma Claudio R, Wirbelauer Christiane, Barry Robert E, Krek Wilhelm

机构信息

Institute for Cell Biology, ETH Zurich, CH-8093 Zurich, Switzerland.

出版信息

Mol Cell Biol. 2006 Aug;26(15):5784-96. doi: 10.1128/MCB.00232-06.

Abstract

Inactivation of the von Hippel-Lindau (VHL) tumor suppressor gene is linked to the development of tumors of the eyes, kidneys, and central nervous system. VHL encodes two gene products, pVHL30 and pVHL19, of which one, pVHL30, associates functionally with microtubules (MTs) to regulate their stability. Here we report that pVHL30 is a novel substrate of glycogen synthase kinase 3 (GSK3) in vitro and in vivo. Phosphorylation of pVHL on serine 68 (S68) by GSK3 requires a priming phosphorylation event at serine 72 (S72) mediated in vitro by casein kinase I. Functional analysis of pVHL species carrying nonphosphorylatable or phosphomimicking mutations at S68 and/or S72 reveals a central role for these phosphorylation events in the regulation of pVHL's MT stabilization (but not binding) activity. Taken together, our results identify pVHL as a novel priming-dependent substrate of GSK3 and suggest a dual-kinase mechanism in the control of pVHL's MT stabilization function. Since GSK3 is a component of multiple signaling pathways that are altered in human cancer, our results further imply that normal operation of the GSK3-pVHL axis may be a critical aspect of pVHL's tumor suppressor mechanism through the regulation of MT dynamics.

摘要

冯·希佩尔-林道(VHL)肿瘤抑制基因的失活与眼、肾和中枢神经系统肿瘤的发生有关。VHL编码两种基因产物,即pVHL30和pVHL19,其中pVHL30在功能上与微管(MT)相关联以调节其稳定性。在此我们报告,pVHL30在体外和体内都是糖原合酶激酶3(GSK3)的一种新底物。GSK3对pVHL丝氨酸68(S68)的磷酸化需要酪蛋白激酶I在体外介导的丝氨酸72(S72)处的引发磷酸化事件。对在S68和/或S72处携带不可磷酸化或磷酸模拟突变的pVHL物种进行功能分析,揭示了这些磷酸化事件在调节pVHL的MT稳定(而非结合)活性中起核心作用。综上所述,我们的结果确定pVHL是GSK3的一种新的引发依赖性底物,并提示在控制pVHL的MT稳定功能中有双激酶机制。由于GSK3是在人类癌症中发生改变的多个信号通路的一个组成部分,我们的结果进一步暗示,GSK3-pVHL轴的正常运作可能是pVHL通过调节MT动力学发挥肿瘤抑制机制的一个关键方面。

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