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转录因子 ERRα 和 PPARα 之间的串扰相互作用有助于 PPARα 介导的基因表达。

Crosstalk interactions between transcription factors ERRα and PPARα assist PPARα-mediated gene expression.

机构信息

VIB Center for Medical Biotechnology, Belgium; Department of Biomolecular Medicine, Ghent University, 9000 Ghent, Belgium.

VIB Center for Inflammation Research, Belgium; Department of Biomedical Molecular Biology, Ghent University, 9000 Ghent, Belgium.

出版信息

Mol Metab. 2024 Jun;84:101938. doi: 10.1016/j.molmet.2024.101938. Epub 2024 Apr 15.

Abstract

OBJECTIVE

The peroxisome proliferator-activated receptor α (PPARα) is a transcription factor driving target genes involved in fatty acid β-oxidation. To what extent various PPARα interacting proteins may assist its function as a transcription factor is incompletely understood. An ORFeome-wide unbiased mammalian protein-protein interaction trap (MAPPIT) using PPARα as bait revealed a PPARα-ligand-dependent interaction with the orphan nuclear receptor estrogen-related receptor α (ERRα). The goal of this study was to characterize the nature of the interaction in depth and to explore whether it was of physiological relevance.

METHODS

We used orthogonal protein-protein interaction assays and pharmacological inhibitors of ERRα in various systems to confirm a functional interaction and study the impact of crosstalk mechanisms. To characterize the interaction surfaces and contact points we applied a random mutagenesis screen and structural overlays. We pinpointed the extent of reciprocal ligand effects of both nuclear receptors via coregulator peptide recruitment assays. On PPARα targets revealed from a genome-wide transcriptome analysis, we performed an ERRα chromatin immunoprecipitation analysis on both fast and fed mouse livers.

RESULTS

Random mutagenesis scanning of PPARα's ligand-binding domain and coregulator profiling experiments supported the involvement of (a) bridging coregulator(s), while recapitulation of the interaction in vitro indicated the possibility of a trimeric interaction with RXRα. The PPARα·ERRα interaction depends on 3 C-terminal residues within helix 12 of ERRα and is strengthened by both PGC1α and serum deprivation. Pharmacological inhibition of ERRα decreased the interaction of ERRα to ligand-activated PPARα and revealed a transcriptome in line with enhanced mRNA expression of prototypical PPARα target genes, suggesting a role for ERRα as a transcriptional repressor. Strikingly, on other PPARα targets, including the isolated PDK4 enhancer, ERRα behaved oppositely. Chromatin immunoprecipitation analyses demonstrate a PPARα ligand-dependent ERRα recruitment onto chromatin at PPARα-binding regions, which is lost following ERRα inhibition in fed mouse livers.

CONCLUSIONS

Our data support the coexistence of multiple layers of transcriptional crosstalk mechanisms between PPARα and ERRα, which may serve to finetune the activity of PPARα as a nutrient-sensing transcription factor.

摘要

目的

过氧化物酶体增殖物激活受体 α(PPARα)是一种转录因子,可驱动参与脂肪酸β氧化的靶基因。各种 PPARα 相互作用蛋白在多大程度上协助其作为转录因子发挥功能尚不完全清楚。使用 PPARα 作为诱饵的全 ORFeome 无偏哺乳动物蛋白-蛋白相互作用陷阱(MAPPIT)揭示了 PPARα-配体依赖性与孤儿核受体雌激素相关受体 α(ERRα)的相互作用。本研究的目的是深入描述相互作用的性质,并探讨其是否具有生理相关性。

方法

我们使用正交蛋白-蛋白相互作用测定和各种系统中 ERRα 的药理学抑制剂来确认功能相互作用,并研究串扰机制的影响。为了描述相互作用表面和接触点,我们应用随机诱变筛选和结构叠加。我们通过核心调节剂肽募集测定确定了两个核受体的相互配体效应的程度。在全基因组转录组分析中揭示的 PPARα 靶标上,我们在快速和喂养的小鼠肝脏上进行了 ERRα 染色质免疫沉淀分析。

结果

PPARα 的配体结合域的随机诱变扫描和核心调节剂分析实验支持(a)桥接核心调节剂的参与,而体外重现将表明存在与 RXRα 的三聚体相互作用的可能性。PPARα·ERRα 相互作用取决于 ERRα 螺旋 12 内的 3 个 C 末端残基,并且受到 PGC1α 和血清剥夺的增强。ERRα 的药理学抑制降低了 ERRα 与配体激活的 PPARα 的相互作用,并揭示了与增强的原型 PPARα 靶基因的 mRNA 表达一致的转录组,表明 ERRα 作为转录抑制剂的作用。引人注目的是,在其他 PPARα 靶标上,包括分离的 PDK4 增强子,ERRα 的行为则相反。染色质免疫沉淀分析表明,在 PPARα 结合区域上,PPARα 配体依赖性 ERRα 募集到染色质上,而在 fed 小鼠肝脏中抑制 ERRα 后则丢失。

结论

我们的数据支持 PPARα 和 ERRα 之间存在多种转录串扰机制的共存,这可能有助于微调 PPARα 作为营养感应转录因子的活性。

相似文献

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Crosstalk interactions between transcription factors ERRα and PPARα assist PPARα-mediated gene expression.
Mol Metab. 2024 Jun;84:101938. doi: 10.1016/j.molmet.2024.101938. Epub 2024 Apr 15.
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Identification of a chromatin-bound ERRα interactome network in mouse liver.
Mol Metab. 2024 May;83:101925. doi: 10.1016/j.molmet.2024.101925. Epub 2024 Mar 26.

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