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MTORC2 controls actin polymerization required for consolidation of long-term memory

机译:MTORC2控制整合长期记忆所需的肌动蛋白聚合

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A major goal of biomedical research is the identification of molecular and cellular mechanisms that underlie memory storage. Here we report a previously unknown signaling pathway that is necessary for the conversion from short-to long-term memory. The mammalian target of rapamycin (mTOR) complex 2 (mTORC2), which contains the regulatory protein Rictor (rapamycin-insensitive companion of mTOR), was discovered only recently and little is known about its function. We found that conditional deletion of Rictor in the postnatal murine forebrain greatly reduced mTORC2 activity and selectively impaired both long-term memory (LTM) and the late phase of hippocampal long-term potentiation (L-LTP). We also found a comparable impairment of LTM in dTORC2-deficient flies, highlighting the evolutionary conservation of this pathway. Actin polymerization was reduced in the hippocampus of mTORC2-deficient mice and its restoration rescued both L-LTP and LTM. Moreover, a compound that promoted mTORC2 activity converted early LTP into late LTP and enhanced LTM. Thus, mTORC2 could be a therapeutic target for the treatment of cognitive dysfunction. ? 2013 Nature America, Inc. All rights reserved.
机译:生物医学研究的一个主要目标是确定构成记忆存储基础的分子和细胞机制。在这里,我们报告以前未知的信号通路,这是从短期记忆到长期记忆的转换所必需的。雷帕霉素(mTOR)复合物2(mTORC2)的哺乳动物靶标是在最近才发现的,该靶标包含调节蛋白Rictor(mTOR对雷帕霉素不敏感的伴侣),其功能鲜为人知。我们发现在产后鼠前脑中有条件地删除Rictor会大大降低mTORC2活性,并选择性地损害长期记忆(LTM)和海马长期增强(L-LTP)的晚期。我们还发现在dTORC2缺失的果蝇中LTM有类似的损伤,突出了该途径的进化保守性。肌动蛋白聚合减少mTORC2缺陷小鼠海马中,其恢复挽救了L-LTP和LTM。此外,促进mTORC2活性的化合物将早期LTP转换为晚期LTP,并增强了LTM。因此,mTORC2可能是治疗认知功能障碍的治疗目标。 ? 2013 Nature America,Inc.保留所有权利。

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