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The LKB1-salt-inducible kinase pathway functions as a key gluconeogenic suppressor in the liver

机译:LKB1盐诱导的激酶途径在肝脏中起关键性糖异生抑制剂的作用

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摘要

LKB1 is a master kinase that regulates metabolism and growth through adenosine monophosphate-activated protein kinase (AMPK) and 12 other closely related kinases. Liver-specific ablation of LKB1 causes increased glucose production in hepatocytes in vitro and hyperglycaemia in fasting mice in vivo. Here we report that the salt-inducible kinases (SIK1, 2 and 3), members of the AMPK-related kinase family, play a key role as gluconeogenic suppressors downstream of LKB1 in the liver. The selective SIK inhibitor HG-9-91-01 promotes dephosphorylation of transcriptional co-activators CRTC2/3 resulting in enhanced gluconeogenic gene expression and glucose production in hepatocytes, an effect that is abolished when an HG-9-91-01-insensitive mutant SIK is introduced or LKB1 is ablated. Although SIK2 was proposed as a key regulator of insulin-mediated suppression of gluconeogenesis, we provide genetic evidence that liver-specific ablation of SIK2 alone has no effect on gluconeogenesis and insulin does not modulate SIK2 phosphorylation or activity. Collectively, we demonstrate that the LKB1-SIK pathway functions as a key gluconeogenic gatekeeper in the liver.
机译:LKB1是一种主激酶,可通过单磷酸腺苷激活的蛋白激酶(AMPK)和其他12种紧密相关的激酶来调节代谢和生长。 LKB1的肝脏特异性消融导致体外肝细胞葡萄糖生成增加,体内空腹小鼠血糖升高。在这里我们报告说,盐诱导型激酶(SIK1、2和3),与AMPK相关的激酶家族的成员,在肝脏中作为LKB1下游的糖原异生抑制剂发挥关键作用。选择性SIK抑制剂HG-9-91-01促进转录共激活因子CRTC2 / 3的去磷酸化,从而增强肝细胞中糖异生基因的表达和葡萄糖生成,而当HG-9-91-01不敏感的突变体被废除引入SIK或消融LKB1。尽管有人建议将SIK2作为胰岛素介导的糖异生抑制的关键调节剂,但我们提供了遗传学证据,表明单独的SIK2肝脏特异性消融对糖异生没有影响,胰岛素也不能调节SIK2的磷酸化或活性。总的来说,我们证明了LKB1-SIK通路在肝脏中起着关键的糖异生网守的作用。

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