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环腺苷酸依赖的蛋白激酶和 c-Jun N-末端激酶介导微管蛋白磷酸化稳定丝氨酸来维持渗透压胁迫下的间期微管。

cAMP-dependent protein kinase and c-Jun N-terminal kinase mediate stathmin phosphorylation for the maintenance of interphase microtubules during osmotic stress.

机构信息

From the Department of Biochemistry and Molecular Biology and Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Victoria 3010, Australia.

出版信息

J Biol Chem. 2014 Jan 24;289(4):2157-69. doi: 10.1074/jbc.M113.470682. Epub 2013 Dec 3.

Abstract

Dynamic microtubule changes after a cell stress challenge are required for cell survival and adaptation. Stathmin (STMN), a cytoplasmic microtubule-destabilizing phosphoprotein, regulates interphase microtubules during cell stress, but the signaling mechanisms involved are poorly defined. In this study ectopic expression of single alanine-substituted phospho-resistant mutants demonstrated that STMN Ser-38 and Ser-63 phosphorylation were specifically required to maintain interphase microtubules during hyperosmotic stress. STMN was phosphorylated on Ser-38 and Ser-63 in response to hyperosmolarity, heat shock, and arsenite treatment but rapidly dephosphorylated after oxidative stress treatment. Two-dimensional PAGE and Phos-tag gel analysis of stress-stimulated STMN phospho-isoforms revealed rapid STMN Ser-38 phosphorylation followed by subsequent Ser-25 and Ser-63 phosphorylation. Previously, we delineated stress-stimulated JNK targeting of STMN. Here, we identified cAMP-dependent protein kinase (PKA) signaling as responsible for stress-induced STMN Ser-63 phosphorylation. Increased cAMP levels induced by cholera toxin triggered potent STMN Ser-63 phosphorylation. Osmotic stress stimulated an increase in PKA activity and elevated STMN Ser-63 and CREB (cAMP-response element-binding protein) Ser-133 phosphorylation that was substantially attenuated by pretreatment with H-89, a PKA inhibitor. Interestingly, PKA activity and subsequent phosphorylation of STMN were augmented in the absence of JNK activation, indicating JNK and PKA pathway cross-talk during stress regulation of STMN. Taken together our study indicates that JNK- and PKA-mediated STMN Ser-38 and Ser-63 phosphorylation are required to preserve interphase microtubules in response to hyperosmotic stress.

摘要

细胞应激挑战后动态微管变化对于细胞存活和适应至关重要。Stathmin(STMN)是一种细胞质微管解稳定磷酸化蛋白,在细胞应激期间调节有丝分裂期微管,但涉及的信号机制尚未明确。在这项研究中,过表达单一丙氨酸取代的磷酸化抗性突变体表明,STMN Ser-38 和 Ser-63 磷酸化是维持高渗应激期间有丝分裂期微管所必需的。STMN 在高渗、热休克和亚砷酸盐处理时在 Ser-38 和 Ser-63 上磷酸化,但在氧化应激处理后迅速去磷酸化。二维 PAGE 和 Phos-tag 凝胶分析应激刺激的 STMN 磷酸化同工型显示 STMN Ser-38 磷酸化迅速,随后是 Ser-25 和 Ser-63 磷酸化。之前,我们描述了应激刺激的 JNK 靶向 STMN。在这里,我们确定 cAMP 依赖性蛋白激酶(PKA)信号传导是应激诱导的 STMN Ser-63 磷酸化的原因。霍乱毒素诱导的 cAMP 水平增加触发了强烈的 STMN Ser-63 磷酸化。渗透压应激刺激 PKA 活性增加,并升高 STMN Ser-63 和 CREB(cAMP 反应元件结合蛋白)Ser-133 磷酸化,用 PKA 抑制剂 H-89 预处理可显著减弱。有趣的是,在没有 JNK 激活的情况下,PKA 活性和随后的 STMN 磷酸化增加,表明 JNK 和 PKA 途径在应激调节 STMN 期间发生交叉对话。总之,我们的研究表明,JNK 和 PKA 介导的 STMN Ser-38 和 Ser-63 磷酸化是维持高渗应激下有丝分裂期微管所必需的。

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