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The activity of the glucocorticoid receptor is regulated by SUMO conjugation to FKBP51

机译:糖皮质激素受体的活性受SUMO与FKBP51结合的调节

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FK506-binding protein 51 (FKBP51) regulates the activity of the glucocorticoid receptor (GR), and is therefore a key mediator of the biological actions of glucocorticoids. However, the understanding of the molecular mechanisms that govern its activity remains limited. Here, we uncover a novel regulatory switch for GR activity by the post-translational modification of FKBP51 with small ubiquitin-like modifier (SUMO). The major SUMO-attachment site, lysine 422, is required for FKBP51-mediated inhibition of GR activity in hippocampal neuronal cells. Importantly, impairment of SUMO conjugation to FKBP51 impacts on GR-dependent neuronal signaling and differentiation. We demonstrate that SUMO conjugation to FKBP51 is enhanced by the E3 ligase PIAS4 and by environmental stresses such as heat shock, which impact on GR-dependent transcription. SUMO conjugation to FKBP51 regulates GR hormone-binding affinity and nuclear translocation by promoting FKBP51 interaction within the GR complex. SUMOylation-deficient FKBP51 fails to interact with Hsp90 and GR thus facilitating the recruitment of the closely related protein, FKBP52, which enhances GR transcriptional activity. Moreover, we show that the modification of FKBP51 with SUMO modulates its binding to Hsp90. Our data establish SUMO conjugation as a novel regulatory mechanism in the Hsp90 cochaperone activity of FKBP51 with a functional impact on GR signaling in a neuronal context.
机译:FK506结合蛋白51(FKBP51)调节糖皮质激素受体(GR)的活性,因此是糖皮质激素生物活性的关键介质。但是,对控制其活性的分子机制的理解仍然有限。在这里,我们发现了FKBP51的翻译后修饰与小泛素样修饰剂(SUMO)的GR活动的新型监管开关。主要的SUMO连接位点赖氨酸422是FKBP51介导的抑制海马神经元细胞GR活性所必需的。重要的是,SUMO与FKBP51结合的损害会影响GR依赖的神经元信号和分化。我们证明,SUMO与FKBP51的结合通过E3连接酶PIAS4和环境应激(如热休克)增强,这对GR依赖性转录有影响。 SUMO与FKBP51的缀合通过促进GR复合物中的FKBP51相互作用来调节GR激素结合亲和力和核易位。 SUMOylation缺陷的FKBP51无法与Hsp90和GR相互作用,从而促进募集密切相关的蛋白FKBP52,从而增强GR转录活性。而且,我们表明用SUMO修饰FKBP51可调节其与Hsp90的结合。我们的数据建立了SUMO偶联作为FKBP51的Hsp90伴侣蛋白活性中的一种新型调节机制,并对神经元背景下的GR信号传导产生功能性影响。

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