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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Bimodal regulation of FoxO3 by AKT and 14-3-3.
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Bimodal regulation of FoxO3 by AKT and 14-3-3.

机译:AKT和14-3-3对FoxO3的双峰调节。

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FoxO3 is a member of FoxO family transcription factors that mediate cellular functions downstream of AKT. FoxO3 phosphorylation by AKT generates binding sites for 14-3-3, which in-turn regulates FoxO3 transcriptional activity and localization. We examine here the functional significance of AKT-FoxO3 interaction and further detail the mechanistic aspects of FoxO3 regulation by AKT and 14-3-3. Our data show that AKT overexpression increases the steady-state levels of FoxO3 protein in a manner dependent on AKT activity and its ability to bind FoxO3. Characterization of the AKT-FoxO3 interaction shows that the three AKT phosphorylation-site-recognition motifs (RxRxxS/T) present on FoxO3, which are required for FoxO3 phosphorylation, are dispensable for AKT binding, suggesting that AKT has a docking point on FoxO3 distinct from the phosphorylation-recognition motifs. Development of a FoxO3 mutant deficient in 14-3-3 binding (P34A), which can be phosphorylated by AKT, established that 14-3-3 binding and not AKT phosphorylation per se controls FoxO3 transcriptional activity. Intriguingly, 14-3-3 binding was found to stabilize FoxO3 by inhibiting its dephosphorylation and degradation rates. Collectively, our data support a model where both AKT and 14-3-3 positively regulate FoxO3 in addition to their established negative roles and that 14-3-3 availability could dictate the fate of phosphorylated FoxO3 toward degradation or recycling.
机译:FoxO3是FoxO家族转录因子的成员,可介导AKT下游的细胞功能。 AKT使FoxO3磷酸化,产生14-3-3的结合位点,进而调节FoxO3的转录活性和定位。我们在这里检查AKT-FoxO3相互作用的功能意义,并进一步详细说明AKT和14-3-3调控FoxO3的机理。我们的数据表明,AKT过表达以依赖于AKT活性及其结合FoxO3的能力的方式增加了FoxO3蛋白的稳态水平。 AKT-FoxO3相互作用的特征表明,FoxO3磷酸化所需的三个FoxT3上存在的AKT磷酸化位点识别基序(RxRxxS / T)对于AKT结合是必不可少的,这表明AKT在FoxO3上有一个对接点来自磷酸化识别基序。可以被AKT磷酸化的,缺乏14-3-3结合(P34A)的FoxO3突变体的开发建立了14-3-3结合而不是AKT磷酸化本身控制了FoxO3转录活性。有趣的是,发现14-3-3结合通过抑制FoxO3的去磷酸化和降解速率来稳定它。总体而言,我们的数据支持一个模型,其中AKT和14-3-3都除了调节其既定的负作用外,还积极调节FoxO3,并且14-3-3的可用性可能指示磷酸化FoxO3走向降解或再循环的命运。

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