Gaynor P M, Greenberg M L
Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor 48109-0606.
J Bacteriol. 1992 Sep;174(17):5711-8. doi: 10.1128/jb.174.17.5711-5718.1992.
CDP-diacylglycerol (CDP-DG) is an important branchpoint intermediate in eucaryotic phospholipid biosynthesis and could be a key regulatory site in phospholipid metabolism. Therefore, we examined the effects of growth phase, phospholipid precursors, and the disruption of phosphatidylcholine (PC) synthesis on the membrane-associated phospholipid biosynthetic enzymes CDP-DG synthase, phosphatidylglycerolphosphate (PGP) synthase, phosphatidylinositol (PI) synthase, and phosphatidylserine (PS) synthase in cell extracts of the fission yeast Schizosaccharomyces pombe. In complete synthetic medium containing inositol, maximal expression of CDP-DG synthase, PGP synthase, PI synthase, and PS synthase in wild-type cells occurred in the exponential phase of growth and decreased two- to fourfold in the stationary phase of growth. In cells starved for inositol, this decrease in PGP synthase, PI synthase, and PS synthase expression was not observed. Starvation for inositol resulted in a twofold derepression of PGP synthase and PS synthase expression, while PI synthase expression decreased initially and then remained constant. Upon the addition of inositol to inositol-starved cells, there was a rapid and continued increase in PI synthase expression. We examined expression of these enzymes in cho2 and cho1 mutants, which are blocked in the methylation pathway for synthesis of PC. Choline starvation resulted in a decrease in PS synthase and CDP-DG synthase expression in cho1 but not cho2 cells. Expression of PGP synthase and PI synthase was not affected by choline starvation. Inositol starvation resulted in a 1.7-fold derepression of PGP synthase expression in cho2 but not cho1 cells when PC was synthesized. PS synthase expression was not depressed, while CDP-DG synthase and PI synthase expression decreased in cho2 and cho1 cells in the absence of inositol. These results demonstrate that (i) CDP-DG synthase, PGP synthase, PI synthase, and PS synthase are similarly regulated by growth phase; (ii) inositol affects the expression of PGP synthase, PI synthase, and PS synthase; (iii) disruption of the methylation pathway results in aberrant patterns of regulation of growth phase and phospholipid precursors. Important differences between S. pombe and Saccharomyces cerevisiae with regard to regulation of these enzymes are discussed.
CDP - 二酰基甘油(CDP - DG)是真核生物磷脂生物合成中的一个重要分支点中间体,可能是磷脂代谢的关键调控位点。因此,我们研究了生长阶段、磷脂前体以及磷脂酰胆碱(PC)合成受阻对裂殖酵母粟酒裂殖酵母细胞提取物中与膜相关的磷脂生物合成酶CDP - DG合酶、磷脂酰甘油磷酸(PGP)合酶、磷脂酰肌醇(PI)合酶和磷脂酰丝氨酸(PS)合酶的影响。在含有肌醇的完全合成培养基中,野生型细胞中CDP - DG合酶、PGP合酶、PI合酶和PS合酶的最大表达出现在生长指数期,在生长稳定期下降两到四倍。在缺乏肌醇的饥饿细胞中,未观察到PGP合酶、PI合酶和PS合酶表达的这种下降。缺乏肌醇导致PGP合酶和PS合酶表达有两倍的去阻遏,而PI合酶表达最初下降然后保持恒定。向缺乏肌醇的细胞中添加肌醇后,PI合酶表达迅速且持续增加。我们研究了这些酶在cho2和cho1突变体中的表达,这两个突变体在PC合成的甲基化途径中受阻。胆碱饥饿导致cho1细胞而非cho2细胞中PS合酶和CDP - DG合酶表达下降。PGP合酶和PI合酶的表达不受胆碱饥饿影响。当合成PC时,缺乏肌醇导致cho2细胞而非cho1细胞中PGP合酶表达有1.7倍的去阻遏。PS合酶表达未受抑制,而在缺乏肌醇时,cho2和cho1细胞中CDP - DG合酶和PI合酶表达下降。这些结果表明:(i)CDP - DG合酶、PGP合酶、PI合酶和PS合酶受生长阶段的调控方式相似;(ii)肌醇影响PGP合酶、PI合酶和PS合酶的表达;(iii)甲基化途径的中断导致生长阶段和磷脂前体调控模式异常。文中讨论了粟酒裂殖酵母和酿酒酵母在这些酶调控方面的重要差异。