Stone S J, Vance J E
Department of Medicine, University of Alberta, Edmonton, Alberta T6G 2S2, Canada.
J Biol Chem. 2000 Nov 3;275(44):34534-40. doi: 10.1074/jbc.M002865200.
We report the subcellular localization of enzymes involved in phosphatidylserine biosynthesis in mammalian cells. Several lines of evidence suggest that phosphatidylserine synthase-1 (PSS1) is highly enriched in mitochondria-associated membranes (MAM) and is largely excluded from the bulk of the endoplasmic reticulum (ER). Taking advantage of the substrate specificity of PSS1, we showed that (i) MAM contain choline exchange activity, whereas this activity is very low in the bulk of the ER, (ii) serine exchange activity is inhibited by choline to a much greater extent in MAM than in ER, and (iii) MAM use phosphatidylcholine and phosphatidylethanolamine as substrates for phosphatidylserine biosynthesis, whereas the ER utilizes only phosphatidylethanolamine. According to immunoblotting of proteins from both CHO-K1 cells and murine liver, PSS1 is localized to MAM, and in hepatoma cells stably expressing PSS1 this protein is highly enriched in MAM. Since the ER contains serine and ethanolamine exchange activities, we had predicted that PSS2 would account for the serine exchange activity in the ER. Unexpectedly, using immunoblotting experiments, we found that (i) PSS2 of CHO-K1 cells is present only in MAM and (ii) PSS2 is restricted to MAM of McArdle cells expressing recombinant PSS2. These data leave open the question of which enzyme imparts PSS activity to the ER and suggest that a third isoform of PSS might be located in the ER.
我们报道了参与哺乳动物细胞磷脂酰丝氨酸生物合成的酶的亚细胞定位。多项证据表明,磷脂酰丝氨酸合酶-1(PSS1)高度富集于线粒体相关膜(MAM)中,而在大部分内质网(ER)中则基本不存在。利用PSS1的底物特异性,我们发现:(i)MAM具有胆碱交换活性,而在大部分内质网中该活性非常低;(ii)丝氨酸交换活性在MAM中比在内质网中受胆碱抑制的程度要大得多;(iii)MAM利用磷脂酰胆碱和磷脂酰乙醇胺作为磷脂酰丝氨酸生物合成的底物,而内质网仅利用磷脂酰乙醇胺。根据对CHO-K1细胞和小鼠肝脏蛋白质的免疫印迹分析,PSS1定位于MAM,并且在稳定表达PSS1的肝癌细胞中,该蛋白高度富集于MAM。由于内质网具有丝氨酸和乙醇胺交换活性,我们曾预测PSS2会参与内质网中的丝氨酸交换活性。出乎意料的是,通过免疫印迹实验我们发现:(i)CHO-K1细胞中的PSS2仅存在于MAM中;(ii)PSS2局限于表达重组PSS2的McArdle细胞的MAM中。这些数据并未解决是哪种酶赋予内质网PSS活性的问题,并提示可能存在第三种PSS同工型定位于内质网中。