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首页> 外文期刊>Nature Metabolism >AMPK-dependent phosphorylation of the GATOR2 component WDR24 suppresses glucose-mediated mTORC1 activation
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AMPK-dependent phosphorylation of the GATOR2 component WDR24 suppresses glucose-mediated mTORC1 activation

机译:GATOR2 组分 WDR24 的 AMPK 依赖性磷酸化抑制葡萄糖介导的 mTORC1 激活

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The mechanistic target of rapamycin complex 1 (mTORC1) controls cell growth in response to amino acid and glucose levels. However, how mTORC1 senses glucose availability to regulate various downstream signalling pathways remains largely elusive. Here we report that AMP-activated protein kinase (AMPK)-mediated phosphorylation of WDR24, a core component of the GATOR2 complex, has a role in the glucose-sensing capability of mTORC1. Mechanistically, glucose deprivation activates AMPK, which directly phosphorylates WDR24 on S155, subsequently disrupting the integrity of the GATOR2 complex to suppress mTORC1 activation. Phosphomimetic Wdr24(S155D) knock-in mice exhibit early embryonic lethality and reduced mTORC1 activity. On the other hand, compared to wild-type littermates, phospho-deficient Wdr24(S155A) knock-in mice are more resistant to fasting and display elevated mTORC1 activity. Our findings reveal that AMPK-mediated phosphorylation of WDR24 modulates glucose-induced mTORC1 activation, thereby providing a rationale for targeting AMPK-WDR24 signalling to fine-tune mTORC1 activation as a potential therapeutic means to combat human diseases with aberrant activation of mTORC1 signalling including cancer. Dai et al. show that in response to low glucose levels, AMP-activated protein kinase-mediated phosphorylation of WDR24, a component of the GATOR2 complex, leads to suppression of mTORC1 activation.
机译:雷帕霉素复杂的机械的目标1(mTORC1)控制细胞生长在回应氨基酸和葡萄糖水平。mTORC1感官葡萄糖可用性规范各种各样的下游信号通路很大程度上是难以捉摸的。活化蛋白激酶(AMPK)介导的的磷酸化WDR24,的一个核心组成部分glucose-sensing GATOR2复杂,有一个角色mTORC1的能力。直接剥夺激活AMPK,磷酸化WDR24 S155,随后扰乱GATOR2复杂的完整性抑制mTORC1激活。Wdr24 (S155D)敲入小鼠表现出早期胚胎死亡率和减少mTORC1活动。另一方面,与野生型相比同窝出生,phospho-deficient Wdr24 (S155A)敲入小鼠禁食和有较强的抵抗力显示高mTORC1活动。显示,AMPK-mediated磷酸化WDR24调节glucose-induced mTORC1激活,从而提供了一个理由针对AMPK-WDR24信号来调整mTORC1激活潜在的治疗意味着对抗人类疾病与异常激活mTORC1信号包括癌症。戴等人表明,为了应对低葡萄糖水平,活化蛋白kinase-mediated的磷酸化WDR24,的一个组成部分mTORC1 GATOR2复杂,导致抑制激活。

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