首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The PICK1 Ca2+ sensor modulates N-methyl-d-aspartate (NMDA) receptor-dependent microRNA-mediated translational repression in neurons
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The PICK1 Ca2+ sensor modulates N-methyl-d-aspartate (NMDA) receptor-dependent microRNA-mediated translational repression in neurons

机译:PICK1 Ca2 +传感器调节神经元中N-甲基-d-天冬氨酸(NMDA)受体依赖性microRNA介导的翻译抑制

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摘要

MicroRNAs (miRNAs) are important regulators of localized mRNA translation in neuronal dendrites. The presence of RNA-induced silencing complex proteins in these compartments and the dynamic miRNA expression changes that occur in response to neuronal stimulation highlight their importance in synaptic plasticity. Previously, we demonstrated a novel interaction between the major RNA-induced silencing complex component Argounaute-2 (Ago2) and the BAR (bin/amphiphysin/rvs) domain protein PICK1. PICK1 recruits Ago2 to recycling endosomes in dendrites, where it inhibits miRNA-mediated translational repression. Chemical induction of long-term depression via NMDA receptor activation causes the dissociation of Ago2 from PICK1 and a consequent increase in dendritic miRNA-mediated gene silencing. The mechanism that underlies the regulation of PICK1-Ago2 binding is unknown. In this study, we demonstrate that the PICK1-Ago2 interaction is directly sensitive to Ca2+ ions so that high [Ca2+]free reduces PICK1 binding to Ago2. Mutating a stretch of C-terminal Ca2+-binding residues in PICK1 results in a complete block of NMDA-induced PICK1-Ago2 disassociation in cortical neurons. Furthermore, the same mutant also blocks NMDA-stimulated miRNA-mediated gene silencing. This study defines a novel mechanism whereby elevated [Ca2+] induced by NMDA receptor activation modulates Ago2 and miRNA activity via PICK1. Our work suggests a Ca2+-dependent process to regulate miRNA activity in neurons in response to the induction of long-term depression.
机译:微小RNA(miRNA)是神经元树突中局部mRNA翻译的重要调控因子。这些区室中存在RNA诱导的沉默复合蛋白,以及响应神经元刺激而发生的动态miRNA表达变化,突显了它们在突触可塑性中的重要性。以前,我们证明了主要的RNA诱导的沉默复杂成分Argounaute-2(Ago2)和BAR(bin / amphiphysin / rvs)域蛋白PICK1之间存在新颖的相互作用。 PICK1募集Ago2回收树突中的内体,在树突中它抑制miRNA介导的翻译抑制。通过NMDA受体活化作用引起的长期抑郁症的化学诱导导致Ago2从PICK1上解离,并因此增加了树突状miRNA介导的基因沉默。调控PICK1-Ago2结合的基础机制尚不清楚。在这项研究中,我们证明了PICK1-Ago2相互作用对Ca 2 + 离子直接敏感,因此高[Ca 2 + ] free减少了PICK1与Ago2的结合。突变PICK1中的一段C末端Ca 2 + 结合残基可导致NMDA诱导的皮层神经元PIC​​K1-Ago2完全解离。此外,同一突变体还阻断了NMDA刺激的miRNA介导的基因沉默。这项研究定义了一种新的机制,其中NMDA受体激活引起的[Ca 2 + ]升高通过PICK1调节Ago2和miRNA活性。我们的工作表明,Ca 2 + 依赖过程调节神经元中的miRNA活性,以响应长期抑郁症的诱发。

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