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首页> 外文期刊>American Journal of Physiology >Overexpression of CYP27 in hepatic and extrahepatic cells: role in the regulation of cholesterol homeostasis.
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Overexpression of CYP27 in hepatic and extrahepatic cells: role in the regulation of cholesterol homeostasis.

机译:CYP27在肝细胞和肝外细胞中的过表达:在胆固醇稳态调节中的作用。

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In the liver, sterol 27-hydroxylase (CYP27) participates in the classic and alternative pathways of bile acid biosynthesis from cholesterol (Chol). In extrahepatic tissues, CYP27 converts intracellular Chol to 27-hydroxycholesterol (27OH-Chol), which may regulate the activity of 3-hydroxy-3-methylglutaryl CoA reductase (HMG-CoA-R). This study attempts to better define the role of CYP27 in the maintenance of Chol homeostasis in hepatic and extrahepatic cells by overexpressing CYP27 in Hep G2 cells and Chinese hamster ovary (CHO) cells through infection with a replication-defective recombinant adenovirus encoding for CMV-CYP27. After infection, CYP27 mRNA and protein levels increased dramatically. CYP27 specific activity also increased two- to fourfold in infected cells (P < or = 0.02), with a marked increase in conversion of [(14)C]Chol to [(14)C]27OH-Chol (approximately 150%; P < or = 0.01). Accumulation of 27OH-Chol in CHO cells was associated with a 50% decrease in HMG-CoA-R specific activity (P < or= 0.02). In infected Hep G2 cells, the significant increase in bile acid synthesis (46%; P < or = 0.006), which prevented the accumulation of intracellular 27OH-Chol, resulted in increased HMG-CoA-R activity (183%; P < or = 0.02). Overexpression of CYP27 in Hep G2 cells also increased acyl CoA-cholesterol acyltransferase (71%, P < or = 0.02) and decreased cholesteryl ester hydrolase (55%, P < or = 0.02). In conclusion, CYP27 generates different physiological responses depending on cell type and presence or absence of bile acid biosynthetic pathways.
机译:在肝脏中,固醇27-羟化酶(CYP27)参与胆固醇(Chol)胆汁酸生物合成的经典途径和替代途径。在肝外组织中,CYP27将细胞内的Chol转换为27-羟基胆固醇(27OH-Chol),后者可调节3-羟基-3-甲基戊二酰辅酶A还原酶(HMG-CoA-R)的活性。本研究试图通过用编码CMV-CYP27的复制缺陷型重组腺病毒感染过表达Hep G2细胞和中国仓鼠卵巢(CHO)细胞中的CYP27来过度表达CYP27,从而更好地定义CYP27在维持肝细胞和肝外细胞Chol稳态中的作用。 。感染后,CYP27 mRNA和蛋白水平急剧增加。 CYP27的比活性在受感染的细胞中也增加了2到4倍(P <或= 0.02),[[14] C] Chol到[(14)C] 27OH-Chol的转化率显着增加(约150%; P <或= 0.01)。 CHO细胞中27OH-Chol的积累与HMG-CoA-R比活性降低50%有关(P <或= 0.02)。在受感染的Hep G2细胞中,胆汁酸合成的显着增加(46%; P <或= 0.006),阻止了细胞内27OH-Chol的积累,导致HMG-CoA-R活性增加(183%; P <或= 0.02)。 CYP27在Hep G2细胞中的过表达也增加了酰基CoA-胆固醇酰基转移酶(71%,P <或= 0.02)和降低了胆固醇酯水解酶(55%,P <或= 0.02)。总之,CYP27会根据细胞类型和胆汁酸生物合成途径的存在与否而产生不同的生理反应。

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