首页> 外文期刊>Molecular cell >GPS2 is required for cholesterol efflux by triggering histone demethylation, LXR recruitment, and coregulator assembly at the ABCG1 locus.
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GPS2 is required for cholesterol efflux by triggering histone demethylation, LXR recruitment, and coregulator assembly at the ABCG1 locus.

机译:触发组蛋白去甲基化,LXR募集和ABCG1基因座上的核心调节子装配,胆固醇流出需要GPS2。

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摘要

Transcriptional coregulators, rather than ligand signals, are suspected to confer context and pathway specificity to nuclear receptor signaling, but the identity of such specifying coregulators and the underlying molecular mechanisms remain largely enigmatic. Here we address this issue in metabolic oxysterol receptor LXR pathways and describe the selective requirement of GPS2 for ABCG1 cholesterol transporter gene transcription and cholesterol efflux from macrophages. We implicate GPS2 in facilitating LXR recruitment to an ABCG1-specific promoter/enhancer unit upon ligand activation and identify functional links to histone H3K9 demethylation. We further describe fundamental differences between ABCG1 and ABCA1 with regard to GPS2 in relation to other coregulators, which are likely to apply to additional LXR-regulated genes. Our work identifies a coregulator-dependent epigenetic mechanism governing the access of a nuclear receptor to communicating regulatory regions in the genome. The pathway and coregulator selectivity of this mechanism implies pharmacological possibilities for the development of selective LXR agonists.
机译:转录转录共调节剂,而不是配体信号,被怀疑赋予核受体信号传导背景和途径特异性,但是这种指定共调节剂的身份和潜在的分子机制在很大程度上仍是未知的。在这里,我们在代谢氧固醇受体LXR途径中解决这个问题,并描述了GPS2对ABCG1胆固醇转运蛋白基因转录和胆固醇从巨噬细胞流出的选择性要求。我们暗示GPS2在配体激活后促进LXR募集到ABCG1特异性启动子/增强子,并确定与组蛋白H3K9去甲基化的功能联系。我们进一步描述了ABCG1和ABCA1在GPS2方面相对于其他调节器的根本区别,这可能适用于其他LXR调控的基因。我们的工作确定了一种依赖coregulator的表观遗传机制,该机制控制核受体与基因组中的通信调节区的接触。该机制的途径和共调节剂选择性暗示了开发选择性LXR激动剂的药理学可能性。

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