首页> 外文期刊>Journal of molecular histology >Abundance of zinc ions in synaptic terminals of mocha mutant mice: zinc transporter 3 immunohistochemistry and zinc sulphide autometallography.
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Abundance of zinc ions in synaptic terminals of mocha mutant mice: zinc transporter 3 immunohistochemistry and zinc sulphide autometallography.

机译:Mocha突变小鼠突触末端的丰富锌离子:锌转运蛋白3免疫组化和硫化锌硫化锌。

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The mocha mouse is an autosomal recessive pigment mutant on mouse chromosome 10 caused by a deletion in the gene for the delta subunit of the adaptor-like complex AP-3. Based on zinc transporter 3 (ZnT3) immunohistochemistry, zinc TSQ fluorescence and a modified Timm method, previous studies found a lack of histochemically-detectable zinc and a substantial reduction in the ZnT3 immunoreactivity. It has, therefore, been suggested that the mocha mouse could serve as a model for studies of the significance of zinc ions in zinc-enriched (ZEN) neurons. We have chosen the mocha-zinc-model in a study of the significance of ZEN neurons in hypoxia-caused damage in mouse brain. In order to establish that the model was either void of zinc ions or had a significantly decreased level of zinc ions in their ZEN terminals, we repeated the studies that had lead to the above assumption, the only methodology difference being that we used the zinc specific Neo-Timm method instead of the Timm method applied in the originalstudy. We found that, although the ZnS autometallography (AMG) technique revealed a reduction in staining intensity as compared to the littermate controls, there were still plenty of zinc ions in the ZEN terminals, in particular visible in telencephalic structures like neocortex and hippocampus. At ultrastructural levels the zinc ions were found in a pool of vesicles of the ZEN terminals as in the control animals, but additionally zinc ions could be traced in ZEN neuronal somata in the neocortex and hippocampus. The mossy fibres in the hippocampus of mocha mice also bind with TSQ, though less than in the controls. We found ZnS AMG grains in ZEN neuronal somata, which were also immunoreactive for ZnT3. Our study confirmed the decreased ZnT3 immunoreactivity in ZEN terminals of the mocha mouse found in the original study. Based on these findings, we suggest that the mocha mouse may not be an ideal model for studies of the histochemically-detectable zinc ion pool of the central nervous system.
机译:Mocha小鼠是由末端染色体10上的常染色体隐性颜料突变体,由衔接剂的倍转AP-3的δ亚基的基因缺失引起。基于锌转运蛋白3(ZnT3)免疫组织化学,锌TSQ荧光和改性TINM方法,先前的研究发现缺乏组织化学检测的锌和ZnT3免疫反应性的显着降低。因此,已经提出了Mocha小鼠可以作为研究锌离子在富含锌(ZEN)神经元中的重要性的模型。我们选择了Mocha-ZINC模型在研究ZEN神经元在缺氧引起的小鼠脑中损伤的重要性研究。为了确定模型是锌离子的空隙,或者在禅宗终端中的锌离子水平显着降低,我们重复了导致上述假设的研究,唯一的方法差异是我们使用锌特异性neo-timm方法而不是应用于InformateStudy中的TIMM方法。我们发现,尽管ZNS自动相结合技术(AMG)技术揭示了与凋落物对照相比的染色强度的降低,但ZEN末端仍然有大量的锌离子,特别是在奈科族藻和海马等视线结构中可见。在超微结构水平,锌离子在ZEN末端的谷物池中发现,如对照动物,但另外锌离子可以在Neocortex和海马的Zen神经元躯体中追踪。 Mocha小鼠海马的苔藓纤维也与TSQ结合,但虽然小于对照。我们在禅宗神经元躯体中找到了ZnS Amg颗粒,这对于ZnT3也是免疫反应。我们的研究证实了在原始研究中发现的Mocha小鼠的Zen末端中的ZnT3免疫反应性降低。基于这些发现,我们建议摩卡小鼠可能不是中枢神经系统的组织化学检测锌离子池的研究的理想模型。

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