首页> 美国卫生研究院文献>The Journal of Neuroscience >The Distribution of Zinc Selenite and Expression of Metallothionein-III mRNA in the Spinal Cord and Dorsal Root Ganglia of the Rat Suggest a Role for Zinc in Sensory Transmission
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The Distribution of Zinc Selenite and Expression of Metallothionein-III mRNA in the Spinal Cord and Dorsal Root Ganglia of the Rat Suggest a Role for Zinc in Sensory Transmission

机译:亚硒酸锌在大鼠脊髓和背根神经节中的分布及金属硫蛋白-III mRNA的表达表明锌在感觉传递中的作用

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摘要

Zinc appears to play a role in synaptic transmission in the hippocampus. We tested the hypothesis that zinc is similarly involved in sensory transmission by determining whether vesicular zinc and metallothionein-III (MT-III), a zinc-binding protein, are localized in rat primary afferent neurons. MT-III mRNA, measured using RT-PCR, and MT-III immunoreactivity, were both present in the spinal cord as well as the thoracic and lumbar dorsal root ganglia (DRG). At a time (24 hr) that allows retrograde transport of zinc selenite to cell bodies, only small-diameter neurons and neurons scattered throughout lamina V of the spinal cord were stained by sodium selenite injected intrathecally. This stain disappeared if a ligature was placed on the dorsal root to block axonal transport, demonstrating that these cells are, in fact, zinc-containing primary afferent neurons. When assessed 1 hr after sodium selenite, stain was distributed throughout the neuropil of the spinal cord, especially in lamina III and the area surrounding the central canal. Even in rhizotomized animals, large- and small-diameter DRG neuronal cell bodies were also stained with either selenite (1 hr) or 6-methoxy 8-para-toluene sulfonamide quinoline (TSQ). Paradoxically, this unique pool of zinc was eliminated in large-diameter DRG neurons after neonatal capsaicin treatment, which had no effect on selenite stain or MT-III mRNA content in small-diameter DRG neurons. In summary, we demonstrate that there is a population of capsaicin-insensitive small-diameter primary afferent neurons that are zinc-containing. In addition, there is a unique pool of capsaicin-sensitive zinc that is associated with large-diameter cell bodies.
机译:锌似乎在海马突触传递中起作用。我们通过确定水泡中的锌和金属硫蛋白-III(MT-III)(一种锌结合蛋白)是否位于大鼠原发传入神经元中来检验锌类似地参与感觉传递的假设。使用RT-PCR测量的MT-III mRNA和MT-III免疫反应性均存在于脊髓以及胸和腰背根神经节(DRG)中。在允许亚硒酸锌逆行运输到细胞体的时间(24小时),鞘内注射亚硒酸钠仅染色小直径神经元和散布在整个脊髓V区的神经元。如果将结扎带放置在背根上以阻止轴突运输,则该色斑消失,表明这些细胞实际上是含锌的初级传入神经元。在亚硒酸钠处理1小时后评估,染色剂分布在整个脊髓的神经纤维中,特别是在椎板III和中央管周围区域。即使在有根茎切除的动物中,大直径和小直径DRG神经元细胞体也可以用亚硒酸盐(1小时)或6-甲氧基8-对甲苯磺酰胺喹啉(TSQ)染色。矛盾的是,在新生辣椒素处理后,大直径DRG神经元中消除了这种独特的锌库,这对小直径DRG神经元中的亚硒酸盐染色或MT-III mRNA含量没有影响。总之,我们证明了辣椒素不敏感的小直径初级传入神经元中含有锌。此外,还有一个与大直径细胞体相关的独特的辣椒素敏感锌库。

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