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AMPK couples p73 with p53 in cell fate decision

机译:AMPK在细胞命运决定中将p73与p53结合

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摘要

The p53 family of proteins has an important role in determining cell fate in response to different types of stress, such as DNA damage, hypoxia, or oncogenic stress. In recent years, p53 has also been shown to respond to metabolic stress, and to be induced by the AMP-activated protein kinase (AMPK), a central cellular energy sensor. A bioinformatic analysis revealed three putative AMPK phopshorylation sites in p73, a p53 tumor suppressor paralog. In vitro and in vivo assays confirmed that AMPK phosphorylates p73 on a novel residue, S426. Following specific pharmacologic stimulation of AMPK in cells, p73 protein half-life was prolonged leading to p73 accumulation in the nucleus. We show that p73 escaped the E3 ligase Itch resulting in reduced p73 ubiquitination and proteasomal degradation. Furthermore, chronic activation of AMPK led to apoptosis that was p73 dependent, but only in p53-expressing cells. Surprisingly, we found that p73 was required for p53 stabilization and accumulation under AMPK activation, but was dispensable under DNA damage. Our findings couple p73 with p53 in determining cell fate under AMPK-induced metabolic stress.
机译:p53蛋白家族在决定细胞命运以应对不同类型的应激(例如DNA损伤,缺氧或致癌性应激)中具有重要作用。近年来,p53还显示出对代谢应激的反应,并被中央细胞能量传感器AMP激活的蛋白激酶(AMPK)诱导。生物信息学分析显示p73是p53抑癌旁系同源物p73中三个推定的AMPK磷酸化位点。体外和体内试验证实,AMPK使新残基S426上的p73磷酸化。在细胞中AMPK受到特定药理刺激后,p73蛋白的半衰期延长,导致p73在细胞核中积累。我们显示p73逃脱了E3连接酶Itch,从而导致p73泛素化减少和蛋白酶体降解。此外,AMPK的慢性激活导致凋亡,该凋亡是p73依赖性的,但仅在表达p53的细胞中。出人意料的是,我们发现p73是AMPK激活下p53稳定和积累所必需的,但在DNA损伤下却是可有可无的。我们的发现将p73与p53结合起来,以确定AMPK诱导的代谢应激下的细胞命运。

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