Department of Chemistry, Tunghai University, Taichung, Taiwan.
Life Science Research Center, Tunghai University, Taichung, Taiwan.
Sci Rep. 2018 Mar 20;8(1):4919. doi: 10.1038/s41598-018-23190-z.
Chronic inflammation and concomitant oxidative stress can induce mitochondrial dysfunction due to cardiolipin (CL) abnormalities in the mitochondrial inner membrane. To examine the responses of mitochondria to inflammation, macrophage-like RAW264.7 cells were activated by Kdo2-Lipid A (KLA) in our inflammation model, and then the mitochondrial CL profile, mitochondrial activity, and the mRNA expression of CL metabolism-related genes were examined. The results demonstrated that KLA activation caused CL desaturation and the partial loss of mitochondrial activity. KLA activation also induced the gene upregulation of cyclooxygenase (COX)-2 and phospholipid scramblase 3, and the gene downregulation of COX-1, lipoxygenase 5, and Δ-6 desaturase. We further examined the phophatidylglycerol (PG) inhibition effects on inflammation. PG supplementation resulted in a 358-fold inhibition of COX-2 mRNA expression. PG(18:1) and PG(18:2) were incorporated into CLs to considerably alter the CL profile. The decreased CL and increased monolysocardiolipin (MLCL) quantity resulted in a reduced CL/MLCL ratio. KLA-activated macrophages responded differentially to PG(18:1) and PG(18:2) supplementation. Specifically, PG(18:1) induced less changes in the CL/MLCL ratio than did PG(18:2), which resulted in a 50% reduction in the CL/MLCL ratio. However, both PG types rescued 20-30% of the mitochondrial activity that had been affected by KLA activation.
慢性炎症和随之而来的氧化应激会导致线粒体功能障碍,这是由于线粒体内膜中的心磷脂 (CL) 异常。为了研究线粒体对炎症的反应,在我们的炎症模型中,用 Kdo2-脂多糖 (KLA) 激活巨噬细胞样 RAW264.7 细胞,然后检查线粒体 CL 谱、线粒体活性以及 CL 代谢相关基因的 mRNA 表达。结果表明,KLA 激活导致 CL 去饱和和部分线粒体活性丧失。KLA 激活还诱导环氧化酶 (COX)-2 和磷脂翻转酶 3 的基因上调,以及 COX-1、脂加氧酶 5 和 Δ-6 去饱和酶的基因下调。我们进一步研究了 PG 对炎症的抑制作用。PG 补充导致 COX-2 mRNA 表达抑制 358 倍。PG(18:1)和 PG(18:2)掺入 CL 中,极大地改变了 CL 谱。CL 的减少和单酰基心磷脂 (MLCL) 数量的增加导致 CL/MLCL 比值降低。KLA 激活的巨噬细胞对 PG(18:1)和 PG(18:2)补充的反应不同。具体来说,PG(18:1)诱导的 CL/MLCL 比值变化小于 PG(18:2),导致 CL/MLCL 比值降低 50%。然而,两种 PG 类型都挽救了 KLA 激活影响的线粒体活性的 20-30%。