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PNAS Plus: Modulation of extrasynaptic NMDA receptors by synaptic and tonic zinc

机译:PNAS Plus:突触和补剂锌对突触外NMDA受体的调节

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摘要

Many excitatory synapses contain high levels of mobile zinc within glutamatergic vesicles. Although synaptic zinc and glutamate are coreleased, it is controversial whether zinc diffuses away from the release site or whether it remains bound to presynaptic membranes or proteins after its release. To study zinc transmission and quantify zinc levels, we required a high-affinity rapid zinc chelator as well as an extracellular ratiometric fluorescent zinc sensor. We demonstrate that tricine, considered a preferred chelator for studying the role of synaptic zinc, is unable to efficiently prevent zinc from binding low-nanomolar zinc-binding sites, such as the high-affinity zinc-binding site found in NMDA receptors (NMDARs). Here, we used ZX1, which has a 1 nM zinc dissociation constant and second-order rate constant for binding zinc that is 200-fold higher than those for tricine and CaEDTA. We find that synaptic zinc is phasically released during action potentials. In response to short trains of presynaptic stimulation, synaptic zinc diffuses beyond the synaptic cleft where it inhibits extrasynaptic NMDARs. During higher rates of presynaptic stimulation, released glutamate activates additional extrasynaptic NMDARs that are not reached by synaptically released zinc, but which are inhibited by ambient, tonic levels of nonsynaptic zinc. By performing a ratiometric evaluation of extracellular zinc levels in the dorsal cochlear nucleus, we determined the tonic zinc levels to be low nanomolar. These results demonstrate a physiological role for endogenous synaptic as well as tonic zinc in inhibiting extrasynaptic NMDARs and thereby fine tuning neuronal excitability and signaling.
机译:许多兴奋性突触在谷氨酸能囊泡中含有高水平的活动锌。尽管突触锌和谷氨酸共释放,但是锌是否从释放位点扩散或释放后是否仍与突触前膜或蛋白质结合仍然存在争议。为了研究锌的传输并定量锌的含量,我们需要一种高亲和力的快速锌螯合剂以及一种细胞外比率荧光锌传感器。我们证明tricine被认为是研究突触锌作用的首选螯合剂,不能有效地阻止锌结合低纳摩尔锌结合位点,例如在NMDA受体(NMDARs)中发现的高亲和力锌结合位点。在这里,我们使用ZX1,它具有1 nM的锌解离常数和二阶速率常数,用于结合锌,比Tricine和CaEDTA高200倍。我们发现,在动作电位期间,突触性锌被逐步释放。响应短时间的突触前刺激,突触锌扩散到突触裂隙之外,在那里抑制突触外NMDAR。在较高的突触前刺激速率期间,释放的谷氨酸激活突触释放的锌未达到的突触外NMDAR,但被周围环境的非突触锌的补铁水平所抑制。通过对耳蜗背侧核中细胞外锌水平进行比例评估,我们确定补品锌水平为低纳摩尔浓度。这些结果证明内源性突触以及补品锌在抑制突触外NMDARs并由此微调神经元兴奋性和信号传导中的生理作用。

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