Mitchell Ryan W, Hatch Grant M
Department of Pharmacology and Therapeutics, University of Manitoba, Winnipeg, Manitoba, Canada R3E 0T6.
Biochim Biophys Acta. 2009 Oct;1788(10):2015-21. doi: 10.1016/j.bbamem.2009.06.002. Epub 2009 Jun 11.
Cardiolipin (CL) is a major phospholipid involved in energy metabolism mammalian mitochondria and fatty acid transport protein-1 (FATP-1) is a fatty acid transport protein that may regulate the intracellular level of fatty acyl-Coenzyme A's. Since fatty acids are required for oxidative phosphorylation via mitochondrial oxidation, we examined the effect of altering FATP-1 levels on CL biosynthesis. HEK-293 mock- and FATP-1 siRNA transfected cells or mock and FATP-1 expressing cells were incubated for 24 h with 0.1 mM oleic acid bound to albumin (1:1 molar ratio) then incubated for 24 h with 0.1 mM [1,3-(3)H]glycerol and radioactivity incorporated into CL determined. FATP-1 siRNA transfected cells exhibited reduced FATP-1 mRNA and increased incorporation of [1,3-(3)H]glycerol into CL (2-fold, p<0.05) compared to controls indicating elevation in de novo CL biosynthesis. The reason for this was an increase in [1,3-(3)H]glycerol uptake and increase in activity and mRNA expression of the CL biosynthetic enzymes. In contrast, expression of FATP-1 resulted a reduction in incorporation of [1,3-(3)H]glycerol into CL (65%, p<0.05) indicating reduced CL synthesis. [1,3-(3)H]Glycerol uptake was unaltered whereas activity of cytidine-5'-diphosphate-1,2-diacyl-sn-glycerol synthetase (CDS) and CDS-2 mRNA expression were reduced in FATP-1 expressing cells compared to control. In addition, in vitro CDS activity was reduced by exogenous addition of oleoyl-Coenzyme A. The data indicate that CL de novo biosynthesis may be regulated by FATP-1 through CDS-2 expression in HEK 293 cells.
心磷脂(CL)是参与哺乳动物线粒体能量代谢的主要磷脂,脂肪酸转运蛋白-1(FATP-1)是一种脂肪酸转运蛋白,可能调节细胞内脂肪酰辅酶A的水平。由于脂肪酸是通过线粒体氧化进行氧化磷酸化所必需的,我们研究了改变FATP-1水平对CL生物合成的影响。将HEK-293空载体和FATP-1 siRNA转染细胞或空载体和FATP-1表达细胞与0.1 mM与白蛋白结合的油酸(摩尔比1:1)孵育24小时,然后与0.1 mM [1,3-(3)H]甘油孵育24小时,并测定掺入CL中的放射性。与对照相比,FATP-1 siRNA转染细胞显示FATP-1 mRNA减少,[1,3-(3)H]甘油掺入CL增加(2倍,p<0.05),表明从头CL生物合成增加。其原因是[1,3-(3)H]甘油摄取增加以及CL生物合成酶的活性和mRNA表达增加。相反,FATP-1的表达导致[1,3-(3)H]甘油掺入CL减少(65%,p<0.05),表明CL合成减少。与对照相比,FATP-1表达细胞中[1,3-(3)H]甘油摄取未改变,而胞苷-5'-二磷酸-1,2-二酰基-sn-甘油合成酶(CDS)的活性和CDS-2 mRNA表达降低。此外,外源添加油酰辅酶A可降低体外CDS活性。数据表明,在HEK 293细胞中,CL从头生物合成可能通过CDS-2表达受FATP-1调节。