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Mifepristone Treatment Results in Differential Regulation of Glycerolipid Biosynthesis in Baby Hamster Kidney Cells Expressing a Mifepristone-Inducible ABCA1.

机译:米非司酮治疗可导致表达米非司酮诱导的ABCA1的仓鼠肾脏细胞中甘油脂的生物合成差异调节。

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ATP binding cassette A1 (ABCA1) transports cholesterol, phospholipids and lipophilic molecules to and across cellular membranes. We examined if ABCA1 expression altered cellular de novo glycerolipid biosynthesis in growing Baby hamster kidney (BHK) cells. Mock BHK cells or cells expressing a mifepristone-inducible ABCA1 (ABCA1) were incubated plus or minus mifepristone and then with [(3)H]serine or [(3)H]inositol or [(3)H]ethanolamine or [methyl-(3)H]choline or [(3)H]glycerol or [(14)C]oleate and radioactivity incorporated into glycerolipids determined. Mifepristone did not affect [1,3-(3)H]glycerol or [(14)C]oleate or [(3)H]ethanolamine or [methyl-(3)H]choline uptake in BHK cells. In contrast, [(3)H]glycerol and [(14)C]oleate incorporated into phosphatidylserine (PtdSer) were elevated 2.4-fold (p < 0.05) and 54% (p < 0.05), respectively, upon ABCA1 induction confirming increased PtdSer biosynthesis from these precursors. However, mifepristone inhibited [(3)H]serine uptake and incorporation into PtdSer indicating that PtdSer synthesis from serine in BHK cells is dependent on serine uptake. Mifepristone stimulated [(3)H]inositol uptake in mock and ABCA1 cells but not its incorporation into phosphatidylinositol indicating that its synthesis from inositol is independent of inositol uptake in BHK cells. [(3)H]glycerol and [(14)C]oleate incorporated into triacylglycerol were reduced and into diacylglycerol elevated only in mifepristone-induced ABCA1 expressing cells due to a decrease in diacylglycerol acyltransferase-1 (DGAT-1) activity. The presence of trichostatin A, a class I and II histone deacetylase inhibitor, reversed the ABCA1-mediated reduction in DGAT-1 activity but did not affect DGAT-1 mRNA expression. Thus, mifepristone has diverse effects on de novo glycerolipid synthesis. We suggest that caution should be exercised when using mifepristone-inducible systems for studies of glycerolipid metabolism in cells expressing glucocorticoid responsive receptors.
机译:ATP结合盒A1(ABCA1)将胆固醇,磷脂和亲脂性分子转运到细胞膜上并穿过细胞膜。我们检查了ABCA1表达是否改变了新生仓鼠肾脏(BHK)细胞中的细胞从头开始的甘油脂生物合成。将模拟的BHK细胞或表达米非司酮可诱导ABCA1(ABCA1)的细胞在米非司酮正负之间孵育,然后与[(3)H]丝氨酸或[(3)H]肌醇或[(3)H]乙醇胺或[甲基-测定(3)H]胆碱或[(3)H]甘油或[(14)C]油酸酯,并确定掺入甘油脂中的放射性。米非司酮不影响BHK细胞中[1,3-(3)H]甘油或[(14)C]油酸酯或[(3)H]乙醇胺或[甲基-(3)H]胆碱摄取。相反,在ABCA1诱导确认增加后,掺入磷脂酰丝氨酸(PtdSer)的[(3)H]甘油和[(14)C]油酸酯分别升高2.4倍(p <0.05)和54%(p <0.05)。由这些前体生物合成PtdSer。但是,米非司酮抑制[(3)H]丝氨酸摄取并掺入PtdSer中,表明BHK细胞中丝氨酸合成PtdSer依赖于丝氨酸摄取。米非司酮刺激模拟和ABCA1细胞中的[(3)H]肌醇摄取,但未将其掺入磷脂酰肌醇中,这表明其在肌醇中的合成与BHK细胞中肌醇的摄取无关。由于二酰基甘油酰基转移酶-1(DGAT-1)活性的降低,仅在米非司酮诱导的ABCA1表达细胞中,掺入三酰基甘油的[(3)H]甘油和[(14)C]油酸酯被还原,而二酰基甘油升高。 I和II类组蛋白脱乙酰基酶抑制剂曲古抑菌素A的存在逆转了ABCA1介导的DGAT-1活性的降低,但不影响DGAT-1 mRNA的表达。因此,米非司酮对从头甘油脂合成具有多种作用。我们建议在使用米非司酮诱导系统研究表达糖皮质激素反应性受体的细胞中的甘油脂代谢时应谨慎行事。

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