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大鼠肾上腺对高密度脂蛋白胆固醇酯的摄取与代谢。

Rat adrenal uptake and metabolism of high density lipoprotein cholesteryl ester.

作者信息

Gwynne J T, Mahaffee D D

机构信息

Department of Medicine, University of North Carolina, Chapel Hill 27514.

出版信息

J Biol Chem. 1989 May 15;264(14):8141-50.

PMID:2542267
Abstract

Metabolism of high density lipoprotein (HDL) cholesteryl ester (CE) by cultured rat adrenal cells was studied. Addition of [3H]CE-HDL to cells pretreated with adrenocorticotrophin in lipoprotein poor media resulted in a time- and concentration-dependent accumulation of [3H]cholesteryl ester and production of [3H]cholesterol and [3H]corticosterone. HDL-CE metabolism could be described as the sum of a high affinity ([ HDL-cholesterol]1/2 max = 16 micrograms/ml) and low affinity ([ HDL-cholesterol]1/2 max greater than 70 micrograms/ml) process. [3H]Cholesterol was found both intracellularly and in the media. Accumulation of [3H]cholesteryl ester could not be attributed to uptake and re-esterification of unesterified cholesterol since addition of Sandoz 58-035, an inhibitor of acyl coenzyme A:cholesterol acyltransferase, did not prevent ester accumulation. Moreover, addition of chloroquine did not inhibit cholesteryl ester hydrolysis indicating that hydrolysis was not lysosomally mediated. Aminoglutethimide prevented conversion of [3H]CE-HDL to steroid hormones but did not inhibit [3H]cholesteryl ester uptake. Cellular accumulation of [3H] cholesteryl ester exceeded accumulation of 125I-apoproteins 5-fold at 1 h and 35-fold at 24 h indicating selective uptake of cholesteryl ester moiety. We conclude that rat adrenal cells possess a mechanism for selective uptake of HDL cholesteryl esters which provides substrate for steroidogenesis. These results constitute the first direct demonstration that cholesteryl esters in HDL can be used as steroidogenic substrate by the rat adrenal cortex.

摘要

研究了培养的大鼠肾上腺细胞对高密度脂蛋白(HDL)胆固醇酯(CE)的代谢。在脂蛋白贫乏的培养基中,将[3H]CE-HDL添加到用促肾上腺皮质激素预处理的细胞中,导致[3H]胆固醇酯的积累呈时间和浓度依赖性,并产生[3H]胆固醇和[3H]皮质酮。HDL-CE代谢可描述为高亲和力([HDL-胆固醇]1/2最大值 = 16微克/毫升)和低亲和力([HDL-胆固醇]1/2最大值大于70微克/毫升)过程的总和。[3H]胆固醇在细胞内和培养基中均有发现。[3H]胆固醇酯的积累不能归因于未酯化胆固醇的摄取和再酯化,因为添加酰基辅酶A:胆固醇酰基转移酶抑制剂桑多斯58-035并不能阻止酯的积累。此外,添加氯喹并不抑制胆固醇酯的水解,表明水解不是由溶酶体介导的。氨鲁米特可阻止[3H]CE-HDL转化为类固醇激素,但不抑制[3H]胆固醇酯的摄取。在1小时时,[3H]胆固醇酯的细胞积累量超过125I-载脂蛋白积累量的5倍,在24小时时超过35倍,表明胆固醇酯部分被选择性摄取。我们得出结论,大鼠肾上腺细胞具有选择性摄取HDL胆固醇酯的机制,该机制为类固醇生成提供底物。这些结果首次直接证明了HDL中的胆固醇酯可被大鼠肾上腺皮质用作类固醇生成底物。

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