Magnusson Björn, Asp Lennart, Boström Pontus, Ruiz Michel, Stillemark-Billton Pia, Lindén Daniel, Borén Jan, Olofsson Sven-Olof
Wallenberg Laboratory for Cardiovascular Research, Göteborg University, Sahlgrenska University Hospital, SE-413 45 Göteborg, Sweden.
Arterioscler Thromb Vasc Biol. 2006 Jul;26(7):1566-71. doi: 10.1161/01.ATV.0000223345.11820.da. Epub 2006 Apr 20.
We investigated the role of adipocyte differentiation-related protein (ADRP) in triglyceride turnover and in the secretion of very low-density lipoprotein (VLDL) from McA-RH7777 cells and primary rat hepatocytes.
An increase in the expression of ADRP increased triglyceride accumulation in cytosolic lipid droplets and prevented the incorporation of fatty acids into secretable triglycerides, thereby reducing the secretion of triglycerides as well as of apolipoprotein B-100 (apoB-100) and apoB-48 VLDL. The ability of ADRP to block the secretion of apoB-100 VLDL1 decreased with increasing quantities of fatty acids in the medium, indicating a saturable process and emphasizing the importance of sequestering of fatty acids for the effect of ADRP on VLDL secretion. Knockdown (small interfering RNA) of ADRP decreased the pool of cytosolic lipid droplets but increased only the secretion of apoB-48 VLDL1. Additionally, there was an increased flow of fatty acids into beta-oxidation.
ADRP is essential for the accumulation of triglycerides in cytosolic lipid droplets. An increase in ADRP prevents the formation of VLDL by diverting fatty acids from the VLDL assembly pathway into cytosolic triglycerides, whereas a decrease of the protein increases the sorting of fatty acids to beta-oxidation and promotes the secretion of apoB-48 VLDL1.
我们研究了脂肪细胞分化相关蛋白(ADRP)在甘油三酯周转以及McA-RH7777细胞和原代大鼠肝细胞极低密度脂蛋白(VLDL)分泌中的作用。
ADRP表达增加会导致胞质脂滴中甘油三酯积累增加,并阻止脂肪酸掺入可分泌的甘油三酯中,从而减少甘油三酯以及载脂蛋白B-100(apoB-100)和apoB-48 VLDL的分泌。随着培养基中脂肪酸量的增加,ADRP阻断apoB-100 VLDL1分泌的能力下降,这表明该过程存在饱和现象,并强调了脂肪酸隔离对于ADRP影响VLDL分泌的重要性。敲低(小干扰RNA)ADRP可减少胞质脂滴池,但仅增加apoB-48 VLDL1的分泌。此外,脂肪酸进入β-氧化的流量增加。
ADRP对于胞质脂滴中甘油三酯的积累至关重要。ADRP增加会通过将脂肪酸从VLDL组装途径转移到胞质甘油三酯中,从而阻止VLDL的形成,而该蛋白减少则会增加脂肪酸向β-氧化的分选,并促进apoB-48 VLDL1的分泌。