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Investigation of LKB1 Ser431 phosphorylation and Cys433 farnesylation using mouse knockin analysis reveals an unexpected role of prenylation in regulating AMPK activity

机译:使用小鼠敲入分析法研究LKB1 Ser 431 磷酸化和Cys 433 法尼基化显示,异戊二烯基化在调节AMPK活性中具有意想不到的作用

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摘要

The LKB1 tumour suppressor protein kinase functions to activate two isoforms of AMPK (AMP-activated protein kinase) and 12 members of the AMPK-related family of protein kinases. The highly conserved C-terminal residues of LKB1 are phosphorylated (Ser431) by PKA (cAMP-dependent protein kinase) and RSK (ribosomal S6 kinase) and farnesylated (Cys433) within a CAAX motif. To better define the role that these post-translational modifications play, we created homozygous LKB1S431A/S431A and LKB1C433S/C433S knockin mice. These animals were viable, fertile and displayed no overt phenotypes. Employing a farnesylation-specific monoclonal antibody that we generated, we established by immunoprecipitation that the vast majority, if not all, of the endogenous LKB1 is prenylated. Levels of LKB1 localized at the membrane of the liver of LKB1C433S/C433S mice and their fibroblasts were reduced substantially compared with the wild-type mice, confirming that farnesylation plays a role in mediating membrane association. Although AMPK was activated normally in the LKB1S431A/S431A animals, we unexpectedly observed in all of the examined tissues and cells taken from LKB1C433S/C433S mice that the basal, as well as that induced by the AMP-mimetic AICAR (5-amino-4-imidazolecarboxamide riboside), AMPK activation, phenformin and muscle contraction were significantly blunted. This resulted in a reduced ability of AICAR to inhibit lipid synthesis in primary hepatocytes isolated from LKB1C433S/C433S mice. The activity of several of the AMPK-related kinases analysed [BRSK1 (BR serine/threonine kinase 1), BRSK2, NUAK1 (NUAK family, SNF1-like kinase 1), SIK3 (salt-inducible kinase 3) and MARK4 (MAP/microtubule affinity-regulating kinase 4)] was not affected in tissues derived from LKB1S431A/S431A or LKB1C433S/C433S mice. Our observations reveal for the first time that farnesylation of LKB1 is required for the activation of AMPK. Previous reports have indicated that a pool of AMPK is localized at the plasma membrane as a result of myristoylation of its regulatory AMPKß subunit. This raises the possibility that LKB1 farnesylation and myristoylation of AMPKß might promote the interaction and co-localization of these enzymes on a two-dimensional membrane surface and thereby promote efficient activation of AMPK.
机译:LKB1肿瘤抑制蛋白激酶的功能是激活AMPK的两个同工型(AMP激活的蛋白激酶)和AMPK相关蛋白激酶家族的12个成员。 LKB1的高度保守的C末端残基在CAAX基序内被PKA(依赖cAMP的蛋白激酶)和RSK(核糖体S6激酶)磷酸化(Ser431),并被法尼基化(Cys433)。为了更好地定义这些翻译后修饰发挥的作用,我们创建了纯合的LKB1S431A / S431A和LKB1C433S / C433S敲入小鼠。这些动物是活的,可育的,并且没有明显的表型。使用我们产生的法尼基化特异性单克隆抗体,我们通过免疫沉淀法确定了,即使不是全部,绝大多数内源性LKB1也被异戊二烯化。与野生型小鼠相比,LKB1C433S / C433S小鼠及其成纤维细胞肝膜中的LKB1水平大大降低,证实法呢基化在介导膜缔合中起作用。尽管AMPK在LKB1S431A / S431A动物中正常激活,但我们出乎意料地在从LKB1C433S / C433S小鼠身上提取的所有检查的组织和细胞中观察到基础以及由AMP模拟AICAR(5-amino-4 -咪唑甲酰胺核糖),AMPK激活,苯乙双胍和肌肉收缩明显减弱。这导致AICAR抑制从LKB1C433S / C433S小鼠分离的原代肝细胞中脂质合成的能力降低。分析了几种与AMPK相关的激酶的活性[BRSK1(BR丝氨酸/苏氨酸激酶1),BRSK2,NUAK1(NUAK家族,SNF1样激酶1),SIK3(盐诱导性激酶3)和MARK4(MAP /微管)亲和力调节激酶4)]在源自LKB1S431A / S431A或LKB1C433S / C433S小鼠的组织中不受影响。我们的观察首次揭示了LKB1的法呢基化是AMPK激活所必需的。先前的报道表明,由于其调节性AMPKß亚基的肉豆蔻酰化,AMPK池位于质膜上。这增加了AMPKß的LKB1法呢基化和肉豆蔻酰化可能促进这些酶在二维膜表面上的相互作用和共定位,从而促进AMPK的有效活化的可能性。

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