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Astrocyte-neuron lactate transport is required for long-term memory formation

机译:星形胶质细胞-乳酸乳酸运输需要长期记忆

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We report that, in the rat hippocampus, learning leads to a significant increase in extracellular lactate levels that derive from glycogen, an energy reserve selectively localized in astrocytes. Astrocytic glycogen breakdown and lactate release are essential for long-term but not short-term memory formation, and for the maintenance of long-term potentiation (LTP) of synaptic strength elicited in vivo. Disrupting the expression of the astrocytic lactate transporters monocarboxylate transporter 4 (MCT4) or MCT1 causes amnesia, which, like LTP impairment, is rescued by L-lactate but not equicaloric glucose. Disrupting the expression of the neuronal lactate transporter MCT2 also leads to amnesia that is unaffected by either L-lactate or glucose, suggesting that lactate import into neurons is necessary for long-term memory. Glycogenolysis and astrocytic lactate transporters are also critical for the induction of molecular changes required for memory formation, including the induction of phospho-CREB, Arc, and phospho-cofilin. We conclude that astrocyte-neuron lactate transport is required for long-term memory formation.
机译:我们报道,在大鼠海马中,学习导致糖原(选择性定位于星形胶质细胞的能量储备)衍生的细胞外乳酸水平显着增加。星形胶质糖原分解和乳酸释放对于长期但不是短期记忆形成以及维持体内诱发的突触强度的长期增强(LTP)至关重要。破坏星形细胞乳酸盐转运蛋白单羧酸盐转运蛋白4(MCT4)或MCT1的表达会导致健忘症,就像LTP损伤一样,L-乳酸可挽救但等热量的葡萄糖无法挽救。破坏神经元乳酸转运蛋白MCT2的表达也会导致健忘症,不受L-乳酸或葡萄糖的影响,这表明乳酸对于长期记忆是必需的。糖原分解和星形胶质乳酸转运蛋白对于诱导记忆形成所需的分子变化(包括诱导磷酸化CREB,Arc和磷酸化cofilin)也至关重要。我们得出结论,长期记忆形成需要星形胶质细胞-神经元乳酸运输。

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