Department of Pathology and Laboratory Medicine, University of California, Los Angeles, CA 90095.
Department of Biological Chemistry, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2022 Feb 15;119(7). doi: 10.1073/pnas.2122683119.
The nuclear receptors liver X receptor (LXR) α and β play crucial roles in hepatic metabolism. Many genes induced in response to pharmacologic LXR agonism have been defined; however, the transcriptional consequences of loss of LXR binding to its genomic targets are less well characterized. Here, we addressed how deletion of both LXRα and LXRβ from mouse liver (LXR double knockout [DKO]) affects the transcriptional regulatory landscape by integrating changes in LXR binding, chromatin accessibility, and gene expression. Many genes involved in fatty acid metabolism showed reduced expression and chromatin accessibility at their intergenic and intronic regions in LXRDKO livers. Genes that were up-regulated with LXR deletion had increased chromatin accessibility at their promoter regions and were enriched for functions not linked to lipid metabolism. Loss of LXR binding in liver reduced the activity of a broad set of hepatic transcription factors, inferred through changes in motif accessibility. By contrast, accessibility at promoter nuclear factor Y (NF-Y) motifs was increased in the absence of LXR. Unexpectedly, we also defined a small set of LXR targets for direct ligand-dependent repression. These genes have LXR-binding sites but showed increased expression in LXRDKO liver and reduced expression in response to the LXR agonist. In summary, the binding of LXRs to the hepatic genome has broad effects on the transcriptional landscape that extend beyond its canonical function as an activator of lipid metabolic genes.
核受体肝 X 受体 (LXR)α 和β在肝脏代谢中发挥着关键作用。许多对药物诱导的 LXR 激动作用有反应的基因已被定义;然而,LXR 与其基因组靶标结合丧失的转录后果尚未得到很好的描述。在这里,我们通过整合 LXR 结合、染色质可及性和基因表达的变化,研究了从鼠肝中缺失 LXRα 和 LXRβ(LXR 双敲除 [DKO])如何影响转录调控景观。许多参与脂肪酸代谢的基因在 LXRDKO 肝脏中的基因间和内含子区域表现出表达和染色质可及性降低。与 LXR 缺失相关的上调基因在其启动子区域具有增加的染色质可及性,并且富集了与脂质代谢无关的功能。肝脏中 LXR 结合的丧失降低了广泛的一组肝转录因子的活性,这是通过改变基序可及性推断出来的。相比之下,在没有 LXR 的情况下,核因子 Y (NF-Y) 启动子基序的可及性增加。出乎意料的是,我们还为直接配体依赖性抑制定义了一小部分 LXR 靶标。这些基因具有 LXR 结合位点,但在 LXRDKO 肝脏中表达增加,并且对 LXR 激动剂的反应表达减少。总之,LXR 与肝脏基因组的结合对转录景观有广泛的影响,超出了其作为脂质代谢基因激活剂的经典功能。