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基于磷酸开关调控的 RSK 复合物的动态控制。

Dynamic control of RSK complexes by phosphoswitch-based regulation.

机构信息

Department of Biochemistry, ELTE Eötvös Loránd University, Budapest, Hungary.

Institute of Enzymology, Research Center for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

FEBS J. 2018 Jan;285(1):46-71. doi: 10.1111/febs.14311. Epub 2017 Nov 20.

Abstract

UNLABELLED

Assembly and disassembly of protein-protein complexes needs to be dynamically controlled and phosphoswitches based on linear motifs are crucial in this process. Extracellular signal-regulated kinase 2 (ERK2) recognizes a linear-binding motif at the C-terminal tail (CTT) of ribosomal S6 kinase 1 (RSK1), leading to phosphorylation and subsequent activation of RSK1. The CTT also contains a classical PDZ domain-binding motif which binds RSK substrates (e.g. MAGI-1). We show that autophosphorylation of the disordered CTT promotes the formation of an intramolecular charge clamp, which efficiently masks critical residues and indirectly hinders ERK binding. Thus, RSK1 CTT operates as an autoregulated phosphoswitch: its phosphorylation at specific sites affects its protein-binding capacity and its conformational dynamics. These biochemical feedbacks, which form the structural basis for the rapid dissociation of ERK2-RSK1 and RSK1-PDZ substrate complexes under sustained epidermal growth factor (EGF) stimulation, were structurally characterized and validated in living cells. Overall, conformational changes induced by phosphorylation in disordered regions of protein kinases, coupled to allosteric events occurring in the kinase domain cores, may provide mechanisms that contribute to the emergence of complex signaling activities. In addition, we show that phosphoswitches based on linear motifs can be functionally classified as ON and OFF protein-protein interaction switches or dimmers, depending on the specific positioning of phosphorylation target sites in relation to functional linear-binding motifs. Moreover, interaction of phosphorylated residues with positively charged residues in disordered regions is likely to be a common mechanism of phosphoregulation.

DATABASE

Structural data are available in the PDB database under the accession numbers 5N7D, 5N7F and 5N7G. NMR spectral assignation data are available in the BMRB database under the accession numbers 27213 and 27214.

摘要

未标记

蛋白质-蛋白质复合物的组装和拆卸需要动态控制,基于线性基序的磷酸开关在这个过程中至关重要。细胞外信号调节激酶 2(ERK2)识别核糖体 S6 激酶 1(RSK1)C 端尾部(CTT)上的线性结合基序,导致 RSK1 的磷酸化和随后的激活。CTT 还包含一个经典的 PDZ 结构域结合基序,该基序结合 RSK 底物(例如 MAGI-1)。我们表明,无序 CTT 的自动磷酸化促进了分子内电荷夹的形成,有效地掩盖了关键残基,并间接地阻碍了 ERK 的结合。因此,RSK1 CTT 作为一种自调节磷酸开关发挥作用:其在特定位点的磷酸化会影响其蛋白质结合能力及其构象动力学。这些生化反馈为在持续表皮生长因子(EGF)刺激下 ERK2-RSK1 和 RSK1-PDZ 底物复合物的快速解离形成结构基础,在活细胞中进行了结构表征和验证。总的来说,磷酸化诱导的无序区蛋白激酶构象变化,加上激酶结构域核心中发生的变构事件,可能为复杂信号活动的出现提供机制。此外,我们表明,基于线性基序的磷酸开关可以根据磷酸化靶位与功能线性结合基序的特定定位,分为 ON 和 OFF 蛋白-蛋白相互作用开关或二聚体。此外,无序区带电荷残基与磷酸化残基的相互作用可能是磷酸化调控的常见机制。

数据库

结构数据可在 PDB 数据库中以 5N7D、5N7F 和 5N7G 的登录号获得。NMR 光谱赋值数据可在 BMRB 数据库中以 27213 和 27214 的登录号获得。

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