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Pin1 promotes GR transactivation by enhancing recruitment to target genes

机译:Pin1通过增强对靶基因的募集来促进GR反式激活

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The glucocorticoid receptor (GR) is a ligand activated transcription factor, serving to regulate both energy metabolism and immune functions. Factors that influence cellular sensitivity to glucocorticoids (GC) are therefore of great interest. The N-terminal of the GR contains numerous potential proline-directed phosphorylation sites, some of which can regulate GR transactivation. Unrestricted proline isomerisation can be inhibited by adjacent serine phosphorylation and requires a prolyl isomerise, Pin1. Pin1 therefore determines the functional outcome of proline-directed kinases acting on the GR, as cis/trans isomers are distinct pools with different interacting proteins. We show that Pin1 mediates GR transactivation, but not GR trans-repression. Two N-terminal GR serines, S203 and S211, are targets for Pin1 potentiation of GR transactivation, establishing a direct link between Pin1 and the GR. We also demonstrate GC-activated co-recruitment of GR and Pin1 to the GILZ gene promoter. The Pin1 effect required both its WW and catalytic domains, and GR recruitment to its GRE was Pin1-dependent. Therefore, Pin1 is a selective regulator of GR transactivation, acting through N-terminal phospho-serine residues to regulate GR recruitment to its target sites in the genome. As Pin1 is dysregulated in disease states, this interaction may contribute to altered GC action in inflammatory conditions.
机译:糖皮质激素受体(GR)是配体激活的转录因子,可调节能量代谢和免疫功能。因此,影响细胞对糖皮质激素(GC)敏感性的因素引起了极大的兴趣。 GR的N端含有许多潜在的脯氨酸定向的磷酸化位点,其中一些可以调节GR反式激活。邻近的丝氨酸磷酸化可抑制脯氨酸的异构化,需要脯氨酸的异构化,即Pin1。因此,Pin1决定了脯氨酸定向激酶作用于GR的功能结果,因为顺式/反式异构体是具有不同相互作用蛋白的独特库。我们显示,Pin1介导GR反式激活,而不是GR反式抑制。两个N端GR丝氨酸S203和S211是GR反式激活的Pin1增强的目标,并在Pin1和GR之间建立了直接链接。我们还展示了GR激活的GR和Pin1共同招募到GILZ基因启动子。 Pin1效应需要其WW和催化域,而GR向GRE的募集则依赖于Pin1。因此,Pin1是GR反式激活的选择性调节剂,通过N末端磷酸丝氨酸残基来调节GR募集到基因组中的目标位点。由于Pin1在疾病状态下失调,因此这种相互作用可能会导致炎症条件下的GC作用改变。

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