首页> 美国卫生研究院文献>Cells >Cellular Plasmalogen Content Does Not Influence Arachidonic Acid Levels or Distribution in Macrophages: A Role for Cytosolic Phospholipase A2γ in Phospholipid Remodeling
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Cellular Plasmalogen Content Does Not Influence Arachidonic Acid Levels or Distribution in Macrophages: A Role for Cytosolic Phospholipase A2γ in Phospholipid Remodeling

机译:细胞浆原原含量不影响花生四烯酸水平或在巨噬细胞中的分布:磷脂重塑中的胞质磷脂酶A2γ的作用。

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摘要

Availability of free arachidonic acid (AA) constitutes a rate limiting factor for cellular eicosanoid synthesis. AA distributes differentially across membrane phospholipids, which is largely due to the action of coenzyme A-independent transacylase (CoA-IT), an enzyme that moves the fatty acid primarily from diacyl phospholipid species to ether-containing species, particularly the ethanolamine plasmalogens. In this work, we examined the dependence of AA remodeling on plasmalogen content using the murine macrophage cell line RAW264.7 and its plasmalogen-deficient variants RAW.12 and RAW.108. All three strains remodeled AA between phospholipids with similar magnitude and kinetics, thus demonstrating that cellular plasmalogen content does not influence the process. Cell stimulation with yeast-derived zymosan also had no effect on AA remodeling, but incubating the cells in AA-rich media markedly slowed down the process. Further, knockdown of cytosolic-group IVC phospholipase A2γ (cPLA2γ) by RNA silencing significantly reduced AA remodeling, while inhibition of other major phospholipase A2 forms such as cytosolic phospholipase A2α, calcium-independent phospholipase A2β, or secreted phospholipase A2 had no effect. These results uncover new regulatory features of CoA-IT-mediated transacylation reactions in cellular AA homeostasis and suggest a hitherto unrecognized role for cPLA2γ in maintaining membrane phospholipid composition via regulation of AA remodeling.
机译:游离花生四烯酸(AA)的可用性构成细胞类二十烷酸合成的速率限制因素。 AA跨膜磷脂的分布不同,这在很大程度上是由于不依赖辅酶A的转酰酶(CoA-IT)的作用,该酶主要将脂肪酸从二酰基磷脂物质转移到含醚物质,尤其是乙醇胺缩醛磷脂。在这项工作中,我们检查了使用鼠巨噬细胞细胞系RAW264.7及其缩醛磷脂缺乏型变体RAW.12和RAW.108对AA重塑对缩醛磷脂含量的依赖性。所有这三个菌株都以相似的幅度和动力学对磷脂之间的AA进行了重塑,从而表明细胞缩醛磷脂含量不会影响该过程。酵母来源的酵母聚糖对细胞的刺激也对AA重塑没有影响,但是在富含AA的培养基中孵育细胞会明显减慢该过程。此外,通过RNA沉默抑制胞质基团IVC磷脂酶A2γ(cPLA2γ)可以显着降低AA重塑,而抑制其他主要磷脂酶A2的形式,例如胞质磷脂酶A2α,不依赖钙的磷脂酶A2β或分泌的磷脂酶A2则无效。这些结果揭示了细胞AA稳态中CoA-IT介导的酰化反应的新调控特征,并暗示了cPLA2γ在通过调控AA重塑来维持膜磷脂成分方面迄今尚未被认识的作用。

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