首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Dual function of Pin1 in NR4A nuclear receptor activation: Enhanced activity of NR4As and increased Nur77 protein stability
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Dual function of Pin1 in NR4A nuclear receptor activation: Enhanced activity of NR4As and increased Nur77 protein stability

机译:Pin1在NR4A核受体激活中的双重功能:增强NR4As的活性并增加Nur77蛋白的稳定性

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摘要

Nur77, Nurr1 and NOR-1 form the NR4A subfamily of the nuclear receptor superfamily and have been shown to regulate various biological processes among which are cell survival and differentiation, apoptosis, inflammation and metabolism. These nuclear receptors have been proposed to act in a ligand-independent manner and we aim to gain insight in the regulation of NR4A activity. A yeast two-hybrid screen identified the peptidyl-prolyl isomerase Pin1 as a novel binding partner of NR4As, which was confirmed by co-immunoprecipitation. Pin1 enhances the transcriptional activity of all three NR4A nuclear receptors and increases protein stability of Nur77 through inhibition of its ubiquitination. Enhanced transcriptional activity of NR4As requires the WW-domain of Pin1 that interacts with the N-terminal transactivation domain and the DNA-binding domain of Nur77. Most remarkably, this enhanced activity is independent of Pin1 isomerase activity. A systematic mutation analysis of all 17 Ser/Thr-Pro-motifs in Nur77 revealed that Pin1 enhances protein stability of Nur77 in an isomerase-dependent manner by acting on phosphorylated Nur77 involving protein kinase CK2-mediated phosphorylation of the Ser 152-Pro 153 motif in Nur77. Given the role of Nur77 in vascular disease and metabolism, this novel regulation mechanism provides perspectives to manipulate Nur77 activity to attenuate these processes.
机译:Nur77,Nurr1和NOR-1形成核受体超家族的NR4A亚家族,并已被证明可调节各种生物过程,包括细胞存活和分化,凋亡,炎症和新陈代谢。已经提出这些核受体以独立于配体的方式起作用,并且我们旨在获得对NR4A活性调节的见解。酵母双杂交筛选鉴定出肽基-脯氨酰异构酶Pin1是NR4A的新型结合伴侣,这通过共免疫沉淀法得以证实。 Pin1增强了所有三个NR4A核受体的转录活性,并通过抑制Nur77的泛素化来增加Nur77的蛋白质稳定性。 NR4A增强的转录活性需要Pin1的WW结构域与Nur77的N末端反式激活结构域和DNA结合结构域相互作用。最显着的是,这种增强的活性独立于Pin1异构酶活性。对Nur77中所有17个Ser / Thr-Pro-motifs的系统突变分析显示,Pin1通过与磷酸化的Nur77作用,涉及蛋白激酶CK2介导的Ser 152-Pro 153基序的磷酸化,以异构酶依赖性方式增强Nur77的蛋白质稳定性在Nur77。鉴于Nur77在血管疾病和新陈代谢中的作用,这种新颖的调节机制为操纵Nur77活性以减弱这些过程提供了前景。

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