The nonvesicular sterol transporter Aster-C plays a minor role in whole body cholesterol balance

非囊泡固醇转运蛋白 Aster-C 在全身胆固醇平衡中起着次要作用

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作者:Rakhee Banerjee, Rachel C Hohe, Shijie Cao, Bryan M Jung, Anthony J Horak, Iyappan Ramachandiran, William J Massey, Venkateshwari Varadharajan, Natalie I Zajczenko, Amy C Burrows, Sumita Dutta, Maryam Goudarzi, Kala Mahen, Abigail Carter, Robert N Helsley, Scott M Gordon, Richard E Morton, Christoph

Discussion

Collectively, these data indicate nominal effects of Aster-C on whole body cholesterol transport and metabolism under divergent dietary cholesterol conditions. These results strongly suggest that Aster-C alone is not sufficient to control whole body cholesterol balance, but can modestly impact circulating cortisol and bile acid levels when dietary cholesterol is limited.

Results

Compared to wild type controls (Gramd1c +/+) mice, mice lackingGramd1c (Gramd1c -/-) have no significant alterations in fecal, liver, or plasma cholesterol. Given the potential role for Aster C in modulating cholesterol metabolism in diverse tissues, we quantified levels of cholesterol metabolites such as bile acids, oxysterols, and steroid hormones. Compared to Gramd1c +/+ controls, Gramd1c -/- mice had modestly reduced levels of select bile acid species and elevated cortisol levels, only under low dietary cholesterol conditions. However, the vast majority of bile acids, oxysterols, and steroid hormones were unaltered in Gramd1c -/- mice. Bulk RNA sequencing in the liver showed that Gramd1c -/- mice did not exhibit alterations in sterol-sensitive genes, but instead showed altered expression of genes in major urinary protein and cytochrome P450 (CYP) families only under low dietary cholesterol conditions.

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