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Identification of a Nuclear Export Signal in the Catalytic Subunit of AMP-activated Protein Kinase

机译:AMP激活的蛋白激酶的催化亚基中的核出口信号的鉴定。

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The metabolic regulator AMP-activated protein kinase (AMPK) maintains cellular homeostasis through regulation of proteins involved in energy-producing and -consuming pathways. Although AMPK phosphorylation targets include cytoplasmic and nuclear proteins, the precise mechanisms that regulate AMPK localization, and thus its access to these substrates, are unclear. We identify highly conserved carboxy-terminal hydrophobic amino acids that function as a leptomycin B–sensitive, CRM1-dependent nuclear export sequence (NES) in the AMPK catalytic subunit (AMPKα). When this sequence is modified AMPKα shows increased nuclear localization via a Ran-dependent import pathway. Cytoplasmic localization can be restored by substituting well-defined snurportin-1 or protein kinase A inhibitor (PKIA) CRM1-binding NESs into AMPKα. We demonstrate a functional requirement in vivo for the AMPKα carboxy-terminal NES, as transgenic Drosophila expressing AMPKα lacking this NES fail to rescue lethality of AMPKα null mutant flies and show decreased activation loop phosphorylation under heat-shock stress. Sequestered to the nucleus, this truncated protein shows highly reduced phosphorylation at the key Thr172 activation residue, suggesting that AMPK activation predominantly occurs in the cytoplasm under unstressed conditions. Thus, modulation of CRM1-mediated export of AMPKα via its C-terminal NES provides an additional mechanism for cells to use in the regulation of AMPK activity and localization.
机译:代谢调节剂AMP激活的蛋白激酶(AMPK)通过调节参与能量产生和消耗途径的蛋白质来维持细胞稳态。尽管AMPK磷酸化的靶标包括细胞质和核蛋白,但尚不清楚调节AMPK定位及其进入这些底物的确切机制。我们鉴定出高度保守的羧基末端疏水氨基酸,它们在AMPK催化亚基(AMPKα)中起细霉素B敏感的CRM1依赖性核出口序列(NES)的作用。修饰该序列后,AMPKα会通过Ran依赖的导入途径显示出增加的核定位。可以通过将定义明确的snurportin-1或蛋白激酶A抑制剂(PKIA)CRM1结合NESs替换为AMPKα来恢复细胞质定位。我们证明了AMPKα羧基末端NES的体内功能需求,因为表达缺少该NES的AMPKα的转基因果蝇无法挽救AMPKα无效突变体果蝇的致死性,并显示在热激胁迫下降低的活化环磷酸化。截断至细胞核,这种截短的蛋白质在关键的Thr172激活残基处显示出高度减少的磷酸化,这表明AMPK激活主要发生在无压力条件下的细胞质中。因此,CRM1介导的经由其C端NES的AMPKα的输出调节为细胞提供了一种用于调节AMPK活性和定位的附加机制。

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