Department of Biological Sciences, Hunter College and the Graduate Center, CUNY, New York, New York, USA; Marine Biological Laboratory, Woods Hole, Massachusetts, USA.
J Neurochem. 2014 Apr;129(2):249-55. doi: 10.1111/jnc.12627. Epub 2013 Dec 13.
Our recent studies have shown that endogenous zinc, co-released with glutamate from the synaptic terminals of vertebrate retinal photoreceptors, provides a feedback mechanism that reduces calcium entry and the concomitant vesicular release of glutamate. We hypothesized that zinc feedback may serve to protect the retina from glutamate excitotoxicity, and conducted in vivo experiments on the retina of the skate (Raja erinacea) to determine the effects of removing endogenous zinc by chelation. These studies showed that removal of zinc by injecting the zinc chelator histidine results in inner retinal damage similar to that induced by the glutamate receptor agonist kainic acid. In contrast, when an equimolar quantity of zinc followed the injection of histidine, the retinal cells were unaffected. Our results are a good indication that zinc, co-released with glutamate by photoreceptors, provides an auto-feedback system that plays an important cytoprotective role in the retina.
我们最近的研究表明,内源性锌与脊椎动物视网膜光感受器突触末梢释放的谷氨酸共同释放,提供了一种反馈机制,可减少钙内流和伴随的谷氨酸囊泡释放。我们假设锌反馈可能有助于保护视网膜免受谷氨酸兴奋性毒性的侵害,并在鳐鱼(Raja erinacea)的视网膜上进行了体内实验,以确定螯合作用去除内源性锌的效果。这些研究表明,通过注射锌螯合剂组氨酸去除锌会导致类似于谷氨酸受体激动剂海人酸诱导的内视网膜损伤。相比之下,当等量的锌紧随组氨酸注射时,视网膜细胞不受影响。我们的结果表明,与光感受器共同释放的谷氨酸的锌提供了一种自动反馈系统,在视网膜中发挥重要的细胞保护作用。