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β-subunit myristoylation functions as an energy sensor by modulating the dynamics of AMP-activated Protein Kinase

机译:β-亚基MyRistoylation通过调制AMP活化蛋白激酶的动态作为能量传感器

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The heterotrimeric AMP-activated protein kinase (AMPK), consisting of α, β and γ subunits, is a stress-sensing enzyme that is activated by phosphorylation of its activation loop in response to increases in cellular AMP. N-terminal myristoylation of the β-subunit has been shown to suppress Thr172 phosphorylation, keeping AMPK in an inactive state. Here we use amide hydrogen-deuterium exchange mass spectrometry (HDX-MS) to investigate the structural and dynamic properties of the mammalian myristoylated and non-myristoylated inactivated AMPK (D139A) in the presence and absence of nucleotides. HDX MS data suggests that the myristoyl group binds near the first helix of the C-terminal lobe of the kinase domain similar to other kinases. Our data, however, also shows that ATP.Mg(2+) results in a global stabilization of myristoylated, but not non-myristoylated AMPK, and most notably for peptides of the activation loop of the α-kinase domain, the autoinhibitory sequence (AIS) and the βCBM. AMP does not have that effect and HDX measurements for myristoylated and non-myristoylated AMPK in the presence of AMP are similar. These differences in dynamics may account for a reduced basal rate of phosphorylation of Thr172 in myristoylated AMPK in skeletal muscle where endogenous ATP concentrations are very high.
机译:由α,β和γ亚基组成的异映均amp-活化的蛋白激酶(AMPK)是一种应激感测酶,其通过其活化环的磷酸化而被激活,响应于细胞amp的增加。 β-亚基的N-末端MyRistoylation已被证明抑制Thr172磷酸化,以无活性状态保持安培。在这里,我们使用酰胺氢 - 氘交换质谱(HDX-MS)来研究哺乳动物MyRistoylated和非MyristoyLated灭活的AMPK(D139A)的结构和动态性质在存在和不存在核苷酸中。 HDX MS数据表明,MyRistoyl组与激酶结构域的C末端叶的第一个螺旋附近粘合,其类似于其他激酶。然而,我们的数据还显示ATP.mg(2+)导致全球稳定的MyRistoyLated,但不是非MyRistoyLated AMPK,最值得注意的是α-激酶结构域的激活环肽,自动抑制序列( ais)和βcbm。 AMP在AMP存在下,MyRistoylated和非MyristoyLated AMPK的效果和HDX测量不具有相似的效果和非MyristoyLated AMPK。动态的这些差异可能考虑在内源性ATP浓度非常高的骨骼肌中,在MyRistoylated AMPK中降低Thr172的基础磷酸化的基础磷酸化。

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