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Inositol-Related Gene Knockouts Mimic Lithium#x27;s Effect on Mitochondrial Function

机译:肌醇相关基因敲除模拟锂对线粒体功能的影响

摘要

Bipolar-disorder, characterized by switches between depressive and manic mood, is treated by mood-stabilizers, lithium being one of them. Among hypotheses suggested, the inositol-depletion hypothesis proposes that lithium attenuates hyperactivation of phosphatidylinositol signaling linked to neurotransmission-related receptors.Available for us are knockout-mice of two genes (IMPA1 or Slc5a3) each encoding for a protein related to inositol metabolism. We previously characterized these mice as exhibiting lithium-like neurochemical and behavioral phenotype. We performed a DNA-microarray study searching for pathways commonly affected by chronic lithium treatment and by the knockout of each of the genes. Here we show up-regulation of mitochondrial function in the three paradigms studied. To verify this result, the interrelationship between treatment with lithium and rotenone, an inhibitor of mitochondrial function, was studied behaviorally. Lithium and rotenone counteracted each other's effects in two bipolar-related models. The results support the inositol-depletion hypothesis and suggest amelioration of aberrant mitochondrial function consequent to inositol-depletion.
机译:以情绪低落和躁狂为特征的双相情感障碍可以通过情绪稳定剂来治疗,锂是其中之一。在提出的假说中,肌醇消耗假说提出锂减弱与神经传递相关受体相关的磷脂酰肌醇信号转导的过度激活。我们可以利用敲除小鼠的两个基因(IMPA1或Slc5a3)来编码每个与肌醇代谢相关的蛋白质。我们以前表征这些小鼠表现出类似锂的神经化学和行为表型。我们进行了DNA微阵列研究,以寻找通常受慢性锂治疗和每个基因敲除影响的途径。在这里,我们显示了研究的三种范式中线粒体功能的上调。为了验证该结果,从行为上研究了锂与鱼藤酮(线粒体功能抑制剂)之间的相互关系。锂和鱼藤酮在两个与双极有关的模型中相互抵消。结果支持肌醇耗竭假说,并建议改善肌醇耗竭导致的异常线粒体功能。

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