首页> 外文OA文献 >Regulation of Nuclear Import/Export of Carbohydrate Response Element-binding Protein (ChREBP): INTERACTION OF AN α-HELIX OF ChREBP WITH THE 14-3-3 PROTEINS AND REGULATION BY PHOSPHORYLATION*
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Regulation of Nuclear Import/Export of Carbohydrate Response Element-binding Protein (ChREBP): INTERACTION OF AN α-HELIX OF ChREBP WITH THE 14-3-3 PROTEINS AND REGULATION BY PHOSPHORYLATION*

机译:核反应进口/出口碳水化合物的法规 元素结合蛋白(ChREBP):ChREBP的α-螺旋相互作用 与14-3-3蛋白质和法规 磷酸化*

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摘要

Carbohydrate response element-binding protein (ChREBP) is a glucose-responsive transcription factor that plays a critical role in the glucose-mediated induction of gene products involved in hepatic glycolysis and lipogenesis. Glucose affects the activity of ChREBP largely through post-translational mechanisms involving phosphorylation-dependent cellular localization. In this work we show that the N-terminal region of ChREBP (residues 1-251) regulates its subcellular localization via an interaction with 14-3-3. 14-3-3 binds an α-helix in this region (residues 125-135) to retain ChREBP in the cytosol, and binding of 14-3-3 is facilitated by phosphorylation of nearby Ser-140 and Ser-196. Phosphorylation of ChREBP at these sites was essential for its interaction with CRM1 for export to the cytosol, whereas nuclear import of ChREBP requires dephosphorylated ChREBP to interact with importin α. Notably, 14-3-3 appears to compete with importin α for ChREBP binding. 14-3-3β bound to a synthetic peptide spanning residues 125-144 and bearing a phosphate at Ser-140 with a dissociation constant of 1.1 μm, as determined by isothermal calorimetry. The interaction caused a shift in the fluorescence maximum of the tryptophan residues of the peptide. The corresponding unphosphorylated peptide failed to bind 14-3-3β. These results suggest that interactions with importin α and 14-3-3 regulate movement of ChREBP into and out of the nucleus, respectively, and that these interactions are regulated by the ChREBP phosphorylation status.
机译:碳水化合物反应元件结合蛋白(ChREBP)是葡萄糖反应性转录因子,在葡萄糖介导的参与肝糖酵解和脂肪形成的基因产物的诱导中起关键作用。葡萄糖主要通过涉及磷酸化依赖性细胞定位的翻译后机制来影响ChREBP的活性。在这项工作中,我们表明ChREBP的N末端区域(残基1-251)通过与14-3-3的相互作用调节其亚细胞定位。 14-3-3在该区域(残基125-135)结合α-螺旋以在细胞溶质中保留ChREBP,并且附近的Ser-140和Ser-196的磷酸化促进了14-3-3的结合。 ChREBP在这些位点的磷酸化对于其与CRM1相互作用以输出到细胞质中至关重要,而ChREBP的核输入则要求去磷酸化的ChREBP与Importinα相互作用。值得注意的是,14-3-3似乎与importinα竞争ChREBP结合。通过等温量热法测定,14-3-3β结合到跨越残基125-144并在Ser-140处带有磷酸根的解离常数为1.1μm的合成肽上。相互作用导致该肽的色氨酸残基的荧光最大值发生移动。相应的未磷酸化的肽不能结合14-3-3β。这些结果表明,与importinα和14-3-3的相互作用分别调节ChREBP进出核的运动,并且这些相互作用受ChREBP磷酸化状态的调节。

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