Regulation of mouse sterol regulatory element-binding protein-1c gene (SREBP-1c) by oxysterol receptors, LXRα and LXRβ
Регуляция гена белка-1c, связывающегося с регуляторным элементом стерола, у мышей (SREBP-1c) рецепторами оксистеролов LXRα и LXRβ
2000-11-15
SCID: 54.1/2gj5xzds
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LXRα and LXRβRXR/LXR DNA-binding siteSREBP-1c genefatty acid biosynthesisoxysterol receptors
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Abstract (AI)
The liver X receptors (LXRs) are members of the nuclear hormone receptor superfamily that are bound and activated by oxysterols. These receptors serve as sterol sensors to regulate the transcription of gene products that control intracellular cholesterol homeostasis through catabolism and transport. In this report, we describe a novel LXR target, the sterol regulatory element-binding protein-1c gene (SREBP-1c), which encodes a membrane-bound transcription factor of the basic helix-loop-helix-leucine zipper family. SREBP-1c expression was markedly increased in mouse tissues in an LXR-dependent manner by dietary cholesterol and synthetic agonists for both LXR and its heterodimer partner, the retinoid X receptor (RXR). Expression of the related gene products, SREBP-1a and SREBP-2, were not increased. Analysis of the mouse SREBP-1c gene promoter revealed an RXR/LXR DNA-binding site that is essential for this regulation. The transcriptional increase in SREBP-1c mRNA by RXR/LXR was accompanied by a similar increase in the level of the nuclear, active form of the SREBP-1c protein and an increase in fatty acid synthesis. Because this active form of SREBP-1c controls the transcription of genes involved in fatty acid biosynthesis, our results reveal a unique regulatory interplay between cholesterol and fatty acid metabolism.
Key Findings
1
An RXR/LXR DNA-binding site in the mouse SREBP-1c promoter is essential for its transcriptional regulation.
2
Dietary cholesterol and synthetic LXR or retinoid X receptor agonists markedly increased SREBP-1c expression in mouse tissues through an LXR-dependent mechanism.
3
RXR/LXR activation increased nuclear active SREBP-1c protein and fatty acid synthesis, demonstrating coordinated regulation of cholesterol and fatty acid metabolism.
4
SREBP-1c is identified as a novel liver X receptor (LXR) target gene linking cholesterol sensing to fatty acid metabolism.
5
The related SREBP-1a and SREBP-2 genes were not induced, indicating isoform-specific regulation by LXR signaling.
Research Object
Mouse SREBP-1c gene and its encoded sterol regulatory element-binding protein-1c regulated by LXRα/LXRβ and RXR
Research Subject
LXR-dependent transcriptional regulation and activation of SREBP-1c, including promoter RXR/LXR binding, nuclear protein accumulation, and stimulation of fatty acid synthesis in response to cholesterol and oxysterol-receptor agonists
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2000-11-15
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