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Disruption of Fyn SH3 Domain Interaction with a Proline-Rich Motif in Liver Kinase B1 Results in Activation of AMP-Activated Protein Kinase

机译:Fyn SH3域与脯氨酸丰富的母题在肝激酶B1中的相互作用的破坏导致AMP激活的蛋白激酶的激活。

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摘要

Fyn-deficient mice display increased AMP-activated Protein Kinase (AMPK) activity as a result of Fyn-dependent regulation of Liver Kinase B1 (LKB1) in skeletal muscle. Mutation of Fyn-specific tyrosine sites in LKB1 results in LKB1 export into the cytoplasm and increased AMPK activation site phosphorylation. This study characterizes the structural elements responsible for the physical interaction between Fyn and LKB1. Effects of point mutations in the Fyn SH2/SH3 domains and in the LKB1 proline-rich motif on 1) Fyn and LKB1 binding, 2) LKB1 subcellular localization and 3) AMPK phosphorylation were investigated in C2C12 muscle cells. Additionally, novel LKB1 proline-rich motif mimicking cell permeable peptides were generated to disrupt Fyn/LKB1 binding and investigate the consequences on AMPK activity in both C2C12 cells and mouse skeletal muscle. Mutation of either Fyn SH3 domain or the proline-rich motif of LKB1 resulted in the disruption of Fyn/LKB1 binding, re-localization of 70% of LKB1 signal in the cytoplasm and a 2-fold increase in AMPK phosphorylation. In vivo disruption of the Fyn/LKB1 interaction using LKB1 proline-rich motif mimicking cell permeable peptides recapitulated Fyn pharmacological inhibition. We have pinpointed the structural elements within Fyn and LKB1 that are responsible for their binding, demonstrating the functionality of this interaction in regulating AMPK activity.
机译:Fyn缺陷小鼠由于骨骼肌中Fyn依赖性肝激酶B1(LKB1)的调控而显示出增加的AMP激活的蛋白激酶(AMPK)活性。 LKB1中Fyn特异性酪氨酸位点的突变导致LKB1出口到细胞质中,并增加AMPK激活位点的磷酸化。这项研究的特点是负责Fyn和LKB1之间的物理相互作用的结构元素。 Fyn SH2 / SH3域和LKB1富含脯氨酸基序中的点突变对1)Fyn和LKB1结合,2)LKB1亚细胞定位和3)AMPK磷酸化在C2C12肌肉细胞中的影响。此外,生成了新的富含LKB1脯氨酸的基序模拟细胞可渗透肽,以破坏Fyn / LKB1结合并研究C2C12细胞和小鼠骨骼肌中AMPK活性的后果。 Fyn SH3结构域或LKB1的富含脯氨酸基序的突变导致Fyn / LKB1结合的破坏,70%的LKB1信号在细胞质中的重新定位以及AMPK磷酸化的2倍增加。 Fyn / LKB1相互作用的体内破坏使用富含LKB1脯氨酸的模拟细胞可渗透肽的基序概括了Fyn药理学抑制作用。我们已经查明了Fyn和LKB1中负责其结合的结构元件,证明了这种相互作用在调节AMPK活性中的功能。

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