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核糖体S6激酶的泛素化独立于有丝分裂原诱导的激酶磷酸化/激活。

The ubiquitination of ribosomal S6 kinases is independent from the mitogen-induced phosphorylation/activation of the kinase.

作者信息

Gwalter J, Wang M-L, Gout I

机构信息

Research Department of Structural and Molecular Biology, University College London, Gower Street, London WC1E 6BT, United Kingdom.

出版信息

Int J Biochem Cell Biol. 2009 Apr;41(4):828-33. doi: 10.1016/j.biocel.2008.08.018. Epub 2008 Aug 22.

Abstract

Ribosomal protein S6 kinase plays a critical role in the regulation of cell growth and energy metabolism. S6K belongs to the AGC family of serine/threonine kinases and is a downstream effector of the mTOR and PI3K signalling pathways. The activity and subcellular localisation of S6K are tightly controlled by phosphorylation/dephosphorylation events. We have recently demonstrated that steady-state levels of S6K isoforms, S6K1 and S6K2, are regulated by ubiquitination-mediated proteasomal degradation. In this study, we report for the first time that the ubiquitination status of S6K isoforms is coordinated by signalling pathways induced by mitogenic stimuli and extracellular stresses. The induction of signal transduction by serum and growth factors significantly increases the level of S6K ubiquitination, while the treatment of cells with UV and staurosporine has the opposite effect. Furthermore, we found that the phosphorylation/activation of S6Ks does not correlate directly with the induction of their ubiquitination in response to diverse cellular stimuli. This study suggests that the ubiquitination and subsequent proteasomal degradation of S6K are controlled by signalling pathways, which could possibly facilitate their association with the components of the ubiquitination machinery.

摘要

核糖体蛋白S6激酶在细胞生长和能量代谢的调节中起关键作用。S6K属于丝氨酸/苏氨酸激酶的AGC家族,是mTOR和PI3K信号通路的下游效应器。S6K的活性和亚细胞定位受到磷酸化/去磷酸化事件的严格控制。我们最近证明,S6K亚型S6K1和S6K2的稳态水平受泛素化介导的蛋白酶体降解调节。在本研究中,我们首次报道S6K亚型的泛素化状态受有丝分裂刺激和细胞外应激诱导的信号通路协调。血清和生长因子诱导的信号转导显著增加S6K泛素化水平,而用紫外线和星形孢菌素处理细胞则有相反的效果。此外,我们发现S6K的磷酸化/激活与它们在不同细胞刺激下泛素化的诱导并不直接相关。这项研究表明,S6K的泛素化及随后的蛋白酶体降解受信号通路控制,这可能有助于它们与泛素化机制的成分结合。

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