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Induction of human liver X receptor alpha gene expression via an autoregulatory loop mechanism
Yu Li1, Charles Bolten, B Ganesh Bhat
1Department of Biotechnology, Mail Zone AA305E, Pharmacia Corp., St. Louis, Missouri 63198, USA.
Abstract:
The liver X receptors (LXRs), members of the nuclear receptor superfamily, play an important role in controlling lipid homeostasis by activating several genes involved in reverse cholesterol transport. These include members of the ATP binding cassette (ABC) superfamily of transporter proteins ABCA1 and ABCG1, surface constituents of plasma lipoproteins like apolipoprotein E, and cholesterol ester transport protein. They also play an important role in fatty acid metabolism by activating the sterol regulatory element-binding protein 1c gene. Here, we identify human LXRalpha (hLXRalpha) as an autoinducible gene. Induction in response to LXR ligands is observed in multiple human cell types including macrophages and occurs within 2--4 h. Analysis of the hLXRalpha promoter revealed three LXR response elements (LXREs); one exhibits strong affinity for both LXRalpha:RXR and LXRbeta:RXR (a type I LXRE), and deletion and mutational studies indicate it plays a critical role in LXR-mediated induction. The other two LXREs are identical to each other, exist within highly conserved Alu repeats, and exhibit selective binding to LXRalpha:RXR (type II LXREs). In transfections, the type I LXRE acts as a strong mediator of both LXRalpha and LXRbeta activity, whereas the type II LXRE acts as a weaker and selective mediator of LXRalpha activity. Our data suggest a model in which LXR ligands trigger an autoregulatory loop leading to selective induction of hLXRalpha gene expression. This would lead to increased hLXRalpha levels and transcription of its downstream target genes such as ABCA1, providing a simple yet exquisite mechanism for cells to respond to LXR ligands and cholesterol loading.
Insights
Liver X receptors (LXRs) activate genes for cholesterol transport. This study shows human LXRalpha is autoinducible, meaning LXR ligands trigger its own gene expression, enhancing lipid homeostasis.
Area of Science:
- Molecular Biology
- Lipid Metabolism
- Nuclear Receptors
Background:
- Liver X receptors (LXRs) are key regulators of lipid homeostasis.
- LXRs control genes involved in reverse cholesterol transport and fatty acid metabolism.
- Key targets include ABCA1, ABCG1, apolipoprotein E, and SREBP-1c.
Purpose of the Study:
- To investigate the auto-regulation of human LXRalpha (hLXRalpha) gene expression.
- To identify and characterize the functional LXR response elements (LXREs) in the hLXRalpha promoter.
- To elucidate the mechanism of LXR-mediated induction of hLXRalpha.
Main Methods:
- Identification of hLXRalpha as an autoinducible gene.
- Analysis of the hLXRalpha promoter for LXREs using deletion and mutational studies.
- Reporter gene transfections to assess the activity of different LXREs.
Main Results:
- hLXRalpha is rapidly induced by LXR ligands in human cells (macrophages).
- Three LXREs were identified in the hLXRalpha promoter: one type I (binds LXR/RXR heterodimers) and two type II (binds LXRalpha/RXR heterodimers).
- The type I LXRE mediates strong induction by both LXRalpha and LXRbeta, while type II LXRE selectively mediates weaker induction by LXRalpha.
Conclusions:
- LXR ligands induce hLXRalpha expression via an autoregulatory loop.
- This mechanism involves specific LXREs with differential binding affinities.
- Selective induction of hLXRalpha enhances transcription of downstream genes like ABCA1, crucial for cholesterol regulation.