Division of Clinical Pharmacology, and.
J Lipid Res. 2013 Nov;54(11):3151-7. doi: 10.1194/jlr.M042556. Epub 2013 Sep 9.
Lipid aldehydes including isolevuglandins (IsoLGs) and 4-hydroxynonenal modify phosphatidylethanolamine (PE) to form proinflammatory and cytotoxic adducts. Therefore, cells may have evolved mechanisms to degrade and prevent accumulation of these potentially harmful compounds. To test if cells could degrade isolevuglandin-modified phosphatidylethanolamine (IsoLG-PE), we generated IsoLG-PE in human embryonic kidney 293 (HEK293) cells and human umbilical cord endothelial cells and measured its stability over time. We found that IsoLG-PE levels decreased more than 75% after 6 h, suggesting that IsoLG-PE was indeed degraded. Because N-acyl phosphatidylethanolamine-hydrolyzing phospholipase D (NAPE-PLD) has been described as a key enzyme in the hydrolysis of N-acyl phosphatidylethanoamine (NAPE) and both NAPE and IsoLG-PE have large aliphatic headgroups, we considered the possibility that this enzyme might also hydrolyze IsoLG-PE. We found that knockdown of NAPE-PLD expression using small interfering RNA (siRNA) significantly increased the persistence of IsoLG-PE in HEK293 cells. IsoLG-PE competed with NAPE for hydrolysis by recombinant mouse NAPE-PLD, with the catalytic efficiency (V(max)/K(m)) for hydrolysis of IsoLG-PE being 30% of that for hydrolysis of NAPE. LC-MS/MS analysis confirmed that recombinant NAPE-PLD hydrolyzed IsoLG-PE to IsoLG-ethanolamine. These results demonstrate that NAPE-PLD contributes to the degradation of IsoLG-PE and suggest that a major physiological role of NAPE-PLD may be to degrade aldehyde-modified PE, thereby preventing the accumulation of these harmful compounds.
脂质醛类,包括异莱格醛(IsoLGs)和 4-羟壬烯醛,会修饰磷脂酰乙醇胺(PE)形成促炎和细胞毒性加合物。因此,细胞可能已经进化出了降解和防止这些潜在有害化合物积累的机制。为了测试细胞是否可以降解异莱格醛修饰的磷脂酰乙醇胺(IsoLG-PE),我们在人胚肾 293(HEK293)细胞和人脐静脉内皮细胞中生成 IsoLG-PE,并测量其随时间的稳定性。我们发现 IsoLG-PE 的水平在 6 小时后降低了 75%以上,表明 IsoLG-PE 确实被降解了。因为 N-酰基磷脂酰乙醇胺水解磷脂酶 D(NAPE-PLD)已被描述为水解 N-酰基磷脂酰乙醇胺(NAPE)的关键酶,并且 NAPE 和 IsoLG-PE 都有大的脂族头部基团,所以我们考虑了这种酶可能也会水解 IsoLG-PE。我们发现,使用小干扰 RNA(siRNA)敲低 NAPE-PLD 的表达会显著增加 IsoLG-PE 在 HEK293 细胞中的持久性。IsoLG-PE 与 NAPE 竞争水解,重组鼠 NAPE-PLD 的水解效率(Vmax/Km)对于 IsoLG-PE 的水解为 NAPE 的 30%。LC-MS/MS 分析证实重组 NAPE-PLD 将 IsoLG-PE 水解为 IsoLG-乙醇胺。这些结果表明 NAPE-PLD 有助于 IsoLG-PE 的降解,并提示 NAPE-PLD 的主要生理作用可能是降解醛修饰的 PE,从而防止这些有害化合物的积累。