Bou Khalil Maroun, Sundaram Meenakshi, Zhang Hong-Yu, Links Philip H, Raven Jennifer F, Manmontri Boripont, Sariahmetoglu Meltem, Tran Khai, Reue Karen, Brindley David N, Yao Zemin
Department of Biochemistry, University of Ottawa, Ottawa, Ontario K1H 8M5, Canada.
J Lipid Res. 2009 Jan;50(1):47-58. doi: 10.1194/jlr.M800204-JLR200. Epub 2008 Sep 3.
Phosphatidate phosphatase-1 (PAP-1) converts phosphatidate to diacylglycerol and plays a key role in the biosynthesis of phospholipids and triacylglycerol (TAG). PAP-1 activity is encoded by members of the lipin family, including lipin-1 (1alpha and 1beta), -2, and -3. We determined the effect of lipin-1 expression on the assembly and secretion of very low density lipoproteins (VLDL) using McA-RH7777 cells. Expression of lipin-1alpha or -1beta increased the synthesis and secretion of [(3)H]glycerol-labeled lipids under either basal- or oleate-supplemented conditions. In the presence of oleate, the increased TAG secretion was mainly associated with VLDL(1) (S(f) > 100) and VLDL(2) (S(f) 20-100). Expression of lipin-1alpha or -1beta increased secretion efficiency and decreased intracellular degradation of [(35)S]apolipoprotein B-100 (apoB100). Knockdown of lipin-1 using specific short interfering RNA decreased secretion of [(3)H]glycerolipids and [(35)S]apoB100 even though total PAP-1 activity was not decreased, owing to the presence of lipin-2 and -3 in the cells. Deletion of the nuclear localization signal sequences within lipin-1alpha not only abolished nuclear localization but also resulted in impaired association with microsomal membranes. Cells expressing the cytosolic lipin-1alpha mutant failed to promote [(35)S]apoB100 synthesis or secretion, and showed compromised stimulation in [(3)H]TAG synthesis and secretion. Thus, alteration in hepatic expression of lipin-1 and its compartmentalization control VLDL assembly/secretion.
磷脂酸磷酸酶-1(PAP-1)将磷脂酸转化为二酰甘油,并在磷脂和三酰甘油(TAG)的生物合成中起关键作用。PAP-1活性由脂素家族成员编码,包括脂素-1(1α和1β)、-2和-3。我们使用McA-RH7777细胞确定了脂素-1表达对极低密度脂蛋白(VLDL)组装和分泌的影响。在基础条件或添加油酸的条件下,脂素-1α或-1β的表达增加了[³H]甘油标记脂质的合成和分泌。在油酸存在的情况下,TAG分泌增加主要与VLDL(1)(S(f)>100)和VLDL(2)(S(f) 20-100)相关。脂素-1α或-1β的表达提高了分泌效率,并减少了[³⁵S]载脂蛋白B-100(apoB100)的细胞内降解。使用特异性短发夹RNA敲低脂素-1,尽管由于细胞中存在脂素-2和-3,总PAP-1活性未降低,但仍降低了[³H]甘油脂质和[³⁵S]apoB100的分泌。删除脂素-1α内的核定位信号序列不仅消除了核定位,还导致与微粒体膜的结合受损。表达胞质脂素-1α突变体的细胞未能促进[³⁵S]apoB100的合成或分泌,并且在[³H]TAG合成和分泌方面的刺激作用受损。因此,肝脏中脂素-1表达的改变及其区室化控制了VLDL的组装/分泌。