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AMPK Causes Cell Cycle Arrest in LKB1-Deficient Cells via Activation of CAMKK2

机译:AMPK通过激活CAMKK2导致LKB1缺陷细胞中的细胞周期停滞

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摘要

The AMP-activated protein kinase (AMPK) is activated by phosphorylation at Thr172, either by the tumor suppressor kinase LKB1 or by an alternate pathway involving the Ca2_/calmodulin-dependent kinase, CAMKK2. Increases in AMP: ATP and ADP: ATP ratios, signifying energy deficit, promote allosteric activation and net Thr172 phosphorylation mediated by LKB1, so that the LKB1-AMPK pathway acts as an energy sensor. Many tumor cells carry loss-of-function mutations in the STK11 gene encoding LKB1, but LKB1 reexpression in these cells causes cell-cycle arrest. Therefore, it was investigated as to whether arrest by LKB1 is caused by activation of AMPK or of one of the AMPK-related kinases, which are also dependent on LKB1 but are not activated by CAMKK2. In three LKB1-null tumor cell lines, treatment with the Ca2+ ionophore A23187 caused a G1 arrest that correlated with AMPK activation and Thr172 phosphorylation. In G361 cells, expression of a truncated, Ca2+/calmodulin-independent CAMKK2 mutant also caused G1 arrest similar to that caused by expression of LKB1, while expression of a dominant-negative AMPK mutant, or a double knockout of both AMPK-a subunits, also prevented the cell-cycle arrest caused by A23187. These mechanistic findings confirm that AMPK activation triggers cell-cycle arrest, and also suggest that the rapid proliferation of LKB1-null tumor cells is due to lack of the restraining influence of AMPK. However, cell-cycle arrest can be restored by reexpressing LKB1 or a constitutively active CAMKK2, or by pharmacologic agents that increase intracellular Ca2_ and thus activate endogenous CAMKK2.
机译:AMP激活的蛋白激酶(AMPK)在Thr172处被磷酸化激活,要么被抑癌激酶LKB1激活,要么被涉及Ca2_ /钙调蛋白依赖性激酶CAMKK2的替代途径激活。 AMP:ATP和ADP:​​ATP比率的增加,表明能量不足,促进了LKB1介导的变构活化和净Thr172磷酸化,因此LKB1-AMPK途径可作为能量传感器。许多肿瘤细胞在编码LKB1的STK11基因中携带功能丧失突变,但是LKB1在这些细胞中的重新表达导致细胞周期停滞。因此,研究了LKB1的阻滞是由AMPK的激活还是由AMPK相关的激酶之一引起的,这些激酶也依赖于LKB1但未被CAMKK2激活。在三种LKB1无效的肿瘤细胞系中,用Ca2 +离子载体A23187处理导致G1停滞,这与AMPK激活和Thr172磷酸化相关。在G361细胞中,与Ca2 + /钙调蛋白无关的截短的CAMKK2突变体的表达也导致G1停滞,类似于LKB1的表达引起的,而显性阴性AMPK突变体的表达或两个AMPK-a亚基的双重敲除,还防止了由A23187引起的细胞周期停滞。这些机制的发现证实了AMPK的激活触发了细胞周期的阻滞,也表明LKB1无效肿瘤细胞的快速增殖是由于缺乏AMPK的抑制作用所致。但是,细胞周期停滞可以通过重新表达LKB1或组成型活性CAMKK2,或通过增加细胞内Ca2_从而激活内源性CAMKK2的药理学来恢复。

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