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首页> 外文期刊>Lipids >Mitochondrial Glycerol-3-Phosphate Acyltransferase-Dependent Phospholipid Synthesis Modulates Phospholipid Mass and IL-2 Production in Jurkat T Cells
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Mitochondrial Glycerol-3-Phosphate Acyltransferase-Dependent Phospholipid Synthesis Modulates Phospholipid Mass and IL-2 Production in Jurkat T Cells

机译:线粒体甘油3-磷酸酰基转移酶依赖的磷脂合成调节Jurkat T细胞中的磷脂质量和IL-2的产生。

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Changes in glycerophospholipid metabolism with age and disease can have a profound effect on immune cell activation and effector function. We previously demonstrated that glycerol-3-phosphate acyltransferase-1, the first and rate limiting step in de novo glycerophospholipid synthesis, plays a role in modulating murine T cell function. The resultant phenotype is characterized by decreased IL-2 production, increased propensity toward apoptosis, and altered membrane glycerophospholipid mass similar to that of an aged T cell. Since T cells in previous experiments were harvested from GPAT-1(-/-) mice, questions remained as to what extent the macro environment of the model influenced the observed cellular phenotype. Therefore, we generated and phenotypically characterized a mitochondrial glycerol-3-phosphate acyltransferase (GPAM) deficient Jurkat T cell. Furthermore, this line was used to probe possible mechanisms by which GPAT-1/GPAM regulates T cell function. We report here that many of the key dysfunctional characteristics of murine GPAT-1(-/-) T cells are recapitulated in the GPAMKD Jurkat T cell. We found striking decreased IL-2 production along with altered phospholipid mass and increased incidence of apoptosis. Since PtdOH is an indirect downstream product of GPAM, we attempted to rescue IL-2 production with PtdOH supplementation; however, this addition did not return IL-2 production to normal levels. Interestingly, we did find significantly decreased Zap-70 phosphorylation following stimulation, suggesting that GPAM deficiency may alter membrane based stimulatory signaling. These data show for the first time that GPAM deficiency results in an inherent defect in Jurkat T cell function and glycerophospholipid composition and that this defect cannot be rescued by addition of exogenous PtdOH.
机译:甘油磷脂代谢随年龄和疾病的变化可对免疫细胞激活和效应子功能产生深远影响。我们先前证明,甘油3-磷酸酰基转移酶-1是从头合成甘油磷脂合成的第一步和限速步骤,在调节鼠T细胞功能中发挥作用。所产生的表型的特征在于与衰老的T细胞相似,其IL-2产生减少,对细胞凋亡的倾向增加以及膜糖脂质量改变。由于以前的实验中的T细胞是从GPAT-1(-/-)小鼠中收获的,因此仍然存在关于模型的宏观环境在多大程度上影响观察到的细胞表型的问题。因此,我们生成并表型表征线粒体甘油3-磷酸酰基转移酶(GPAM)不足的Jurkat T细胞。此外,该品系用于探究GPAT-1 / GPAM调节T细胞功能的可能机制。我们在这里报告,在GPAMKD Jurkat T细胞中概括了小鼠GPAT-1(-/-)T细胞的许多关键功能异常特征。我们发现惊人地降低了IL-2的产生,同时改变了磷脂质量并增加了细胞凋亡的发生率。由于PtdOH是GPAM的间接下游产物,因此我们尝试通过补充PtdOH来挽救IL-2的产生。但是,这种添加并未使IL-2的产生恢复正常水平。有趣的是,我们确实发现刺激后Zap-70磷酸化显着降低,这表明GPAM缺乏可能会改变基于膜的刺激信号。这些数据首次表明GPAM缺乏会导致Jurkat T细胞功能和甘油磷脂组成的固有缺陷,并且无法通过添加外源PtdOH挽救这种缺陷。

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