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Endosomal pH in neuronal signaling and synaptic transmission: role of Na+/H+ exchanger NHE5

机译:内体pH在神经元信号和突触传递中的作用:Na + / H +交换子NHE5的作用

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摘要

Neuronal precursor cells extend multiple neurites during development, one of which extends to form an axon whereas others develop into dendrites. Chemical stimulation of N-methyl D-aspartate (NMDA) receptor in fully-differentiated neurons induces projection of dendritic spines, small spikes protruding from dendrites, thereby establishing another layer of polarity within the dendrite. Neuron-enriched Na+/H+ exchanger NHE5 contributes to both neurite growth and dendritic spine formation. In resting neurons and neuro-endocrine cells, neuron-enriched NHE5 is predominantly associated with recycling endosomes where it colocalizes with nerve growth factor (NGF) receptor TrkA. NHE5 potently acidifies the lumen of TrkA-positive recycling endosomes and regulates cell-surface targeting of TrkA, whereas chemical stimulation of NMDA receptors rapidly recruits NHE5 to dendritic spines, alkalinizes dendrites and down-regulates the dendritic spine formation. Possible roles of NHE5 in neuronal signaling via proton movement in subcellular compartments are discussed.
机译:神经元前体细胞在发育过程中会延伸多个神经突,其中一个延伸形成轴突,而其他则发展成树突。在完全分化的神经元中对N-甲基D-天冬氨酸(NMDA)受体进行化学刺激可诱导树突棘的投射,从树突中伸出的小尖峰,从而在树突内建立另一层极性。富含神经元的Na + / H + 交换子NHE5有助于神经突生长和树突棘形成。在静止的神经元和神经内分泌细胞中,富含神经元的NHE5主要与再循环的核内体相关,在那里它与神经生长因子(NGF)受体TrkA共同定位。 NHE5可以有效地酸化TrkA阳性再循环内体的内腔并调节TrkA的细胞表面靶向,而NMDA受体的化学刺激会迅速将NHE5募集到树突棘,碱化树突并下调树突棘的形成。讨论了NHE5在质子运动通过亚细胞区隔在神经元信号传导中的可能作用。

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