Radeau T, Lau P, Robb M, McDonnell M, Ailhaud G, McPherson R
Lipoprotein and Atherosclerosis Group, University of Ottawa Heart Institute, Ontario, Canada.
J Lipid Res. 1995 Dec;36(12):2552-61.
Cholesteryl ester transfer protein (CETP) has a well-defined role in plasma neutral lipid transport. CETP synthesized by human adipose tissue may contribute to the plasma CETP pool. CETP mRNA abundance increases in subcutaneous adipose tissue in response to cholesterol feeding and we have hypothesized that CETP gene expression is regulated by a specific pool of cellular sterol. In the present study, we have quantified CETP mRNA levels in subcutaneous adipose tissue of 10 female subjects using a solution hybridization RNase protection assay. Particulate (membrane cholesterol) and lipid droplet cholesterol (core cholesterol) were determined by gas chromatography. CETP mRNA abundance in these adipose tissue specimens correlated significantly with membrane cholesterol expressed as a fraction of membrane protein (r = 0.67, P = 0.031). There was also a linear relationship between CETP mRNA abundance and membrane cholesterol to core triglyceride ratio (r = 0.77, P = 0.009) and a strong correlation between the percentage of cellular cholesterol in the membrane fraction (ratio of membrane to core cholesterol) and CETP mRNA abundance (r = 0.91, P = 0.0002). In contrast, there was a negative relationship between each of lipid droplet cholesterol and triglyceride and CETP mRNA levels. Human adipose tissue maintained in organ culture for several days was shown to secrete CETP into the culture medium. Incubation with cholesterol-rich chylomicron remnants elicited a dose-dependent increase in both membrane and core cholesterol and a concomitant increase in the level of CETP mRNA. These studies demonstrate that adipose tissue CETP mRNA abundance is a function of membrane cholesterol concentration rather than lipid droplet cholesterol and that CETP mRNA increases with adipocyte cholesterol enrichment via chylomicron remnants. CETP gene expression is highest in small lipid-poor adipocytes, suggesting that CETP synthesized and secreted by adipocytes may have a role in promoting cellular cholesterol accumulation.
胆固醇酯转运蛋白(CETP)在血浆中性脂质转运中具有明确的作用。人脂肪组织合成的CETP可能对血浆CETP库有贡献。喂食胆固醇后,皮下脂肪组织中CETP mRNA丰度增加,我们推测CETP基因表达受特定细胞固醇池调控。在本研究中,我们使用溶液杂交核糖核酸酶保护分析法对10名女性受试者皮下脂肪组织中的CETP mRNA水平进行了定量。通过气相色谱法测定微粒(膜胆固醇)和脂滴胆固醇(核心胆固醇)。这些脂肪组织标本中CETP mRNA丰度与以膜蛋白分数表示的膜胆固醇显著相关(r = 0.67,P = 0.031)。CETP mRNA丰度与膜胆固醇与核心甘油三酯的比值之间也存在线性关系(r = 0.77,P = 0.009),并且膜部分中细胞胆固醇的百分比(膜胆固醇与核心胆固醇的比值)与CETP mRNA丰度之间存在强相关性(r = 0.91,P = 0.0002)。相比之下,脂滴胆固醇和甘油三酯中的每一种与CETP mRNA水平均呈负相关。在器官培养中维持数天的人脂肪组织被证明可将CETP分泌到培养基中。用富含胆固醇的乳糜微粒残粒孵育会引起膜胆固醇和核心胆固醇的剂量依赖性增加以及CETP mRNA水平的相应增加。这些研究表明,脂肪组织中CETP mRNA丰度是膜胆固醇浓度的函数,而非脂滴胆固醇的函数,并且通过乳糜微粒残粒,CETP mRNA会随着脂肪细胞胆固醇富集而增加。CETP基因表达在小的低脂脂肪细胞中最高,这表明脂肪细胞合成和分泌的CETP可能在促进细胞胆固醇积累中发挥作用。