Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697, USA.
BMC Genomics. 2012 Feb 1;13:51. doi: 10.1186/1471-2164-13-51.
In a previous genome-wide analysis of FXR binding to hepatic chromatin, we noticed that an extra nuclear receptor (NR) half-site was co-enriched close to the FXR binding IR-1 elements and we provided limited support that the monomeric LRH-1 receptor that binds to NR half-sites might function together with FXR to activate gene expression.
To analyze the global pattern for LRH-1 binding and to determine whether it might associate with FXR on a whole genome-wide scale, we analyzed LRH-1 binding to the entire hepatic genome using a non-biased genome-wide ChIP-seq approach. We identified over 10,600 LRH-1 binding sites in hepatic chromatin and over 20% were located within 2 kb of the 5' end of a known mouse gene. Additionally, the results demonstrate that a significant fraction of the genome sites occupied by LRH-1 are located close to FXR binding sites revealed in our earlier study. A Gene ontology analysis revealed that genes preferentially enriched in the LRH-1/FXR overlapping gene set are related to lipid metabolism. These results demonstrate that LRH-1 recruits FXR to lipid metabolic genes. A significant fraction of FXR binding peaks also contain a nuclear receptor half-site that does not bind LRH-1 suggesting that additional monomeric nuclear receptors such as RORs and NR4As family members may also target FXR to other pathway selective genes related to other areas of metabolism such as glucose metabolism where FXR has also been shown to play an important role.
These results document an important role for LRH-1 in hepatic metabolism through acting predominantly at proximal promoter sites and working in concert with additional nuclear receptors that bind to neighboring sites.
在之前对 FXR 与肝染色质结合的全基因组分析中,我们注意到一个额外的核受体 (NR) 半位点与 FXR 结合的 IR-1 元件紧密共富集,并且我们提供了有限的支持,即结合 NR 半位点的单体 LRH-1 受体可能与 FXR 一起发挥作用激活基因表达。
为了分析 LRH-1 结合的整体模式,并确定它是否可能在全基因组范围内与 FXR 相关,我们使用非偏向性全基因组 ChIP-seq 方法分析了 LRH-1 与整个肝基因组的结合。我们在肝染色质中鉴定出超过 10600 个 LRH-1 结合位点,其中超过 20%位于已知小鼠基因 5'端的 2kb 内。此外,结果表明,LRH-1 占据的基因组位点的很大一部分靠近我们早期研究中揭示的 FXR 结合位点。基因本体论分析表明,在 LRH-1/FXR 重叠基因集中富集的基因与脂质代谢有关。这些结果表明 LRH-1 将 FXR 募集到脂质代谢基因。FXR 结合峰的很大一部分也包含一个不结合 LRH-1 的核受体半位点,这表明其他单体核受体,如 RORs 和 NR4A 家族成员,也可能将 FXR 靶向到其他与代谢相关的选择性基因,如葡萄糖代谢,其中 FXR 也被证明在其中发挥重要作用。
这些结果记录了 LRH-1 通过主要在近端启动子位点发挥作用并与结合邻近位点的其他核受体协同作用,在肝代谢中的重要作用。