Esaki Kayoko, Sayano Tomoko, Sonoda Chiaki, Akagi Takumi, Suzuki Takeshi, Ogawa Takuya, Okamoto Masahiro, Yoshikawa Takeo, Hirabayashi Yoshio, Furuya Shigeki
From the Laboratories of Functional Genomics and Metabolism and the Laboratories for Molecular Psychiatry and Molecular Membrane Neuroscience.
From the Laboratories of Functional Genomics and Metabolism and Molecular Membrane Neuroscience.
J Biol Chem. 2015 Jun 5;290(23):14595-609. doi: 10.1074/jbc.M114.603860. Epub 2015 Apr 22.
L-serine is required to synthesize membrane lipids such as phosphatidylserine and sphingolipids. Nevertheless, it remains largely unknown how a diminished capacity to synthesize L-serine affects lipid homeostasis in cells and tissues. Here, we show that deprivation of external L-serine leads to the generation of 1-deoxysphingolipids (doxSLs), including 1-deoxysphinganine, in mouse embryonic fibroblasts (KO-MEFs) lacking D-3-phosphoglycerate dehydrogenase (Phgdh), which catalyzes the first step in the de novo synthesis of L-serine. A novel mass spectrometry-based lipidomic approach demonstrated that 1-deoxydihydroceramide was the most abundant species of doxSLs accumulated in L-serine-deprived KO-MEFs. Among normal sphingolipid species in KO-MEFs, levels of sphinganine, dihydroceramide, ceramide, and hexosylceramide were significantly reduced after deprivation of external L-serine, whereas those of sphingomyelin, sphingosine, and sphingosine 1-phosphate were retained. The synthesis of doxSLs was suppressed by supplementing the culture medium with L-serine but was potentiated by increasing the ratio of L-alanine to L-serine in the medium. Unlike with L-serine, depriving cells of external L-leucine did not promote the occurrence of doxSLs. Consistent with results obtained from KO-MEFs, brain-specific deletion of Phgdh in mice also resulted in accumulation of doxSLs in the brain. Furthermore, L-serine-deprived KO-MEFs exhibited increased formation of cytosolic lipid bodies containing doxSLs and other sphingolipids. These in vitro and in vivo studies indicate that doxSLs are generated in the presence of a high ratio of L-alanine to L-serine in cells and tissues lacking Phgdh, and de novo synthesis of L-serine is necessary to maintain normal sphingolipid homeostasis when the external supply of this amino acid is limited.
L-丝氨酸是合成膜脂如磷脂酰丝氨酸和鞘脂所必需的。然而,L-丝氨酸合成能力下降如何影响细胞和组织中的脂质稳态,在很大程度上仍不清楚。在此,我们表明,在缺乏催化L-丝氨酸从头合成第一步的D-3-磷酸甘油酸脱氢酶(Phgdh)的小鼠胚胎成纤维细胞(KO-MEFs)中,去除外部L-丝氨酸会导致1-脱氧鞘脂(doxSLs)的生成,包括1-脱氧鞘氨醇。一种基于质谱的新型脂质组学方法表明,1-脱氧二氢神经酰胺是L-丝氨酸缺乏的KO-MEFs中积累的最丰富的doxSLs种类。在KO-MEFs中的正常鞘脂种类中,去除外部L-丝氨酸后,鞘氨醇、二氢神经酰胺、神经酰胺和己糖神经酰胺的水平显著降低,而鞘磷脂、鞘氨醇和鞘氨醇1-磷酸的水平保持不变。通过在培养基中补充L-丝氨酸可抑制doxSLs的合成,但通过增加培养基中L-丙氨酸与L-丝氨酸的比例可增强其合成。与L-丝氨酸不同,去除细胞外L-亮氨酸不会促进doxSLs的产生。与从KO-MEFs获得的结果一致,小鼠大脑特异性缺失Phgdh也导致大脑中doxSLs的积累。此外,L-丝氨酸缺乏的KO-MEFs表现出含有doxSLs和其他鞘脂的胞质脂质体形成增加。这些体外和体内研究表明,在缺乏Phgdh的细胞和组织中,当L-丙氨酸与L-丝氨酸的比例较高时会生成doxSLs,并且当这种氨基酸的外部供应有限时,L-丝氨酸的从头合成对于维持正常的鞘脂稳态是必要的。