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Zinc transporter-1 concentrates at the postsynaptic density of hippocampal synapses

机译:锌转运蛋白-1浓缩在海马突触的突触后密度

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Background Zinc concentrates at excitatory synapses, both at the postsynaptic density and in a subset of glutamatergic boutons. Zinc can modulate synaptic plasticity, memory formation and nociception by regulating transmitter receptors and signal transduction pathways. Also, intracellular zinc accumulation is a hallmark of degenerating neurons in several neurological disorders. To date, no single zinc extrusion mechanism has been directly localized to synapses. Based on the presence of a canonical PDZ I motif in the Zinc Transporter-1 protein (ZnT1), we hypothesized that ZnT1 may be targeted to synaptic compartments for local control of cytosolic zinc. Using our previously developed protocol for the co-localization of reactive zinc and synaptic proteins, we further asked if ZnT1 expression correlates with presynaptic zinc content in individual synapses. Findings Here we demonstrate that ZnT1 is a plasma membrane protein that is enriched in dendritic spines and in biochemically isolated synaptic membranes. Hippocampal CA1 synapses labelled by postembedding immunogold showed over a 5-fold increase in ZnT1 concentration at synaptic junctions compared with extrasynaptic membranes. Subsynaptic analysis revealed a peak ZnT1 density on the postsynaptic side of the synapse, < 10 nm away from the postsynaptic membrane. ZnT1 was found in the vast majority of excitatory synapses regardless of the presence of vesicular zinc in presynaptic boutons. Conclusions Our study has identified ZnT1 as a novel postsynaptic density protein, and it may help elucidate the role of zinc homeostasis in synaptic function and disease.
机译:背景技术锌浓缩在兴奋性突触处,既在突触后密度和谷氨酸谷氨酸末端的子集中。锌可以通过调节发射器受体和信号转导途径来调节突触可塑性,记忆形成和伤害效果。此外,细胞内锌累积是几种神经障碍中退化神经元的标志。迄今为止,没有单一锌挤出机制直接局限于突触。基于锌转运蛋白-1蛋白(ZnT1)中的规范PDZ I基序的存在,我们假设ZnT1可以靶向突触隔室,用于局部对细胞溶胶锌的局部控制。使用先前开发的用于反应性锌和突触蛋白的共定位的协议,我们进一步询问ZnT1表达是否与个别突触中的突触前锌含量相关。在此表明,ZnT1是富含树突刺和生物化学上分离的突触膜的血浆膜蛋白。通过Postembedded IMMUNGold标记的海马CA1突触在突触结的ZnT1浓度增加到5倍,与突触结相比突触膜相比。 upbynaptic分析显示突触突触侧的峰值ZnT1密度,远离突触后膜10nm。无论在突触前的Boutons中存在囊泡锌,都发现了ZnT1在绝大多数兴奋性突触中。结论我们的研究已经确定了ZnT1作为一种新的突触后密度蛋白,可能有助于阐明Zinc稳态在突触功能和疾病中的作用。

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