bioRxiv · 10.1101/2022.05.14.491815
Hydroxylation site-specific and production-dependent roles of endogenous oxysterols in cellular cholesterol homeostasis
Abstract
The cholesterol metabolites oxysterols play central roles in cholesterol feedback control. They modulate the activity of two master transcription factors that control cholesterol homeostatic responses, sterol regulatory element-binding protein-2 (SREBP-2) and liver X receptor (LXR). Although the role of exogenous oxysterols has been well-established, whether endogenously synthesized oxysterols similarly control both SREBP-2 and LXR to those added exogenously remains poorly explored. Here, we carefully validate the role of oxysterols enzymatically synthesized within cells in cholesterol homeostatic responses. We first show that SREBP-2 responds more sensitively to exogenous oxysterols than LXR. We then show that endogenous 25-hydroxycholesterol (25-HC), 27-HC, and 24S-HC synthesized by CH25H, CYP27A1, and CYP46A1, respectively, suppress SREBP-2 activity at different degrees by stabilizing Insig proteins whereas 7a-HC has little impact on SREBP-2. The results explain the hydroxylation site-specific role of endogenous oxysterols. On the other hand, the expression of CH25H, CYP46A1, CYP27A1, or CYP7A1 fails to induce LXR target gene expression. We also show the 25-HC production-dependent suppression of SREBP-2 using a tetracycline-inducible CH25H expression system. Moreover, we quantitatively determine the specificity of the four cholesterol hydroxylases in living cells. Based on these results, we propose that endogenous side-chain oxysterols primarily regulate the activity of SREBP-2, not LXR.
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Saito, H., Sato, R., Shimizu, M., Yamauchi, Y.. 2022-05-14. Hydroxylation site-specific and production-dependent roles of endogenous oxysterols in cellular cholesterol homeostasis. https://doi.org/10.1101/2022.05.14.491815
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