Ryu S B, Karlsson B H, Ozgen M, Palta J P
Environmental Stress Physiology, Department of Horticulture, University of Wisconsin, Madison, WI 53706, USA.
Proc Natl Acad Sci U S A. 1997 Nov 11;94(23):12717-21. doi: 10.1073/pnas.94.23.12717.
Phospholipid signaling mediated by lipid-derived second messengers or biologically active lipids is still new and is not well established in plants. We recently have found that lysophosphatidylethanolamine (LPE), a naturally occurring lipid, retards senescence of leaves, flowers, and postharvest fruits. Phospholipase D (PLD) has been suggested as a key enzyme in mediating the degradation of membrane phospholipids during the early stages of plant senescence. Here we report that LPE inhibited the activity of partially purified cabbage PLD in a cell-free system in a highly specific manner. Inhibition of PLD by LPE was dose-dependent and increased with the length and unsaturation of the LPE acyl chain whereas individual molecular components of LPE such as ethanolamine and free fatty acid had no effect on PLD activity. Enzyme-kinetic analysis suggested noncompetitive inhibition of PLD by LPE. In comparison, the related lysophospholipids such as lysophosphatidylcholine, lysophosphatidylglycerol, and lysophosphotidylserine had no significant effect on PLD activity whereas PLD was stimulated by lysophosphatidic acid and inhibited by lysophosphatidylinositol. Membrane-associated and soluble PLD, extracted from cabbage and castor bean leaf tissues, also was inhibited by LPE. Consistent with acyl-specific inhibition of PLD by LPE, senescence of cranberry fruits as measured by ethylene production was more effectively inhibited according to the increasing acyl chain length and unsaturation of LPE. There are no known specific inhibitors of PLD in plants and animals. We demonstrate specific inhibitory regulation of PLD by a lysophospholipid.
由脂质衍生的第二信使或生物活性脂质介导的磷脂信号传导在植物中仍是新领域且尚未完全确立。我们最近发现,溶血磷脂酰乙醇胺(LPE),一种天然存在的脂质,可延缓叶片、花朵和采后果实的衰老。磷脂酶D(PLD)被认为是植物衰老早期介导膜磷脂降解的关键酶。在此我们报告,在无细胞体系中,LPE以高度特异性的方式抑制了部分纯化的甘蓝PLD的活性。LPE对PLD的抑制呈剂量依赖性,并随着LPE酰基链的长度和不饱和度增加而增强,而LPE的单个分子成分如乙醇胺和游离脂肪酸对PLD活性没有影响。酶动力学分析表明LPE对PLD的抑制为非竞争性抑制。相比之下,相关的溶血磷脂如溶血磷脂酰胆碱、溶血磷脂酰甘油和溶血磷脂酰丝氨酸对PLD活性没有显著影响,而溶血磷脂酸刺激PLD活性,溶血磷脂酰肌醇抑制PLD活性。从甘蓝和蓖麻叶组织中提取的膜结合型和可溶性PLD也受到LPE的抑制。与LPE对PLD的酰基特异性抑制一致,根据LPE酰基链长度和不饱和度的增加,通过乙烯产生量测定的蔓越莓果实衰老受到更有效的抑制。在植物和动物中尚无已知的PLD特异性抑制剂。我们证明了一种溶血磷脂对PLD具有特异性抑制调节作用。