Institute for Clinical Chemistry, University Hospital and University Zurich, 8091 Zürich, Switzerland.
University Center for Primary Care and Public Health, University of Lausanne, 1010 Lausanne, Switzerland; Swiss Institute of Bioinformatics, 1015 Lausanne, Switzerland.
J Biol Chem. 2020 Feb 14;295(7):1889-1897. doi: 10.1074/jbc.AC119.011883. Epub 2019 Dec 20.
Sphingolipids (SLs) are structurally diverse lipids that are defined by the presence of a long-chain base (LCB) backbone. Typically, LCBs contain a single Δ4E double bond (DB) (mostly d18:1), whereas the dienic LCB sphingadienine (d18:2) contains a second DB at the Δ14Z position. The enzyme introducing the Δ14Z DB is unknown. We analyzed the LCB plasma profile in a gender-, age-, and BMI-matched subgroup of the CoLaus cohort ( = 658). Sphingadienine levels showed a significant association with gender, being on average ∼30% higher in females. A genome-wide association study (GWAS) revealed variants in the fatty acid desaturase 3 () gene to be significantly associated with the plasma d18:2/d18:1 ratio ( = -log 7.9). Metabolic labeling assays, FADS3 overexpression and knockdown approaches, and plasma LCB profiling in FADS3-deficient mice confirmed that FADS3 is a LCB desaturase and required for the introduction of the Δ14Z double bond. Moreover, we showed that FADS3 is required for the conversion of the atypical cytotoxic 1-deoxysphinganine (1-deoxySA, m18:0) to 1-deoxysphingosine (1-deoxySO, m18:1). HEK293 cells overexpressing FADS3 were more resistant to m18:0 toxicity than WT cells. In summary, using a combination of metabolic profiling and GWAS, we identified FADS3 to be essential for forming Δ14Z DB containing LCBs, such as d18:2 and m18:1. Our results unravel FADS3 as a Δ14Z LCB desaturase, thereby disclosing the last missing enzyme of the SL synthesis pathway.
鞘脂(SLs)是结构多样的脂质,其特征在于存在长链碱基(LCB)主链。通常,LCB 含有单个 Δ4E 双键(DB)(主要为 d18:1),而二烯基鞘氨醇神经酰胺(d18:2)含有第二个 DB 在 Δ14Z 位置。引入 Δ14Z DB 的酶尚不清楚。我们分析了 CoLaus 队列中性别、年龄和 BMI 匹配亚组(=658)的 LCB 血浆谱。鞘氨醇神经酰胺水平与性别显著相关,女性平均高出约 30%。全基因组关联研究(GWAS)显示脂肪酸去饱和酶 3()基因中的变体与血浆 d18:2/d18:1 比值显著相关(=-log 7.9)。代谢标记测定、FADS3 过表达和敲低方法以及 FADS3 缺陷小鼠的血浆 LCB 谱分析证实,FADS3 是一种 LCB 去饱和酶,是引入 Δ14Z 双键所必需的。此外,我们表明 FADS3 是将非典型细胞毒性 1-脱氧鞘氨醇(1-脱氧 SA,m18:0)转化为 1-脱氧鞘氨醇(1-脱氧 SO,m18:1)所必需的。过表达 FADS3 的 HEK293 细胞比 WT 细胞对 m18:0 毒性更具抗性。总之,我们使用代谢谱分析和 GWAS 的组合,鉴定 FADS3 是形成含有 Δ14Z DB 的 LCB(如 d18:2 和 m18:1)所必需的。我们的研究结果揭示了 FADS3 是 Δ14Z LCB 去饱和酶,从而揭示了 SL 合成途径中最后一个缺失的酶。