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首页> 外文期刊>The Neuroscientist: a review journal bringing neurobiology, neurology and psychiatry >Multiple Roles for Nogo Receptor 1 in Visual System Plasticity
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Multiple Roles for Nogo Receptor 1 in Visual System Plasticity

机译:Nogo Receptor 1在视觉系统可塑性中的多重作用

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摘要

During the developmental critical period for visual plasticity, discordant vision alters the responsiveness of neurons in visual cortex. The subsequent closure of the critical period not only consolidates neural function but also limits recovery of acuity from preceding abnormal visual experience. Despite species-specific differences in circuitry of the visual system, these characteristics are conserved. The nogo-66 receptor 1 (ngr1) is one of only a small number of genes identified thus far that is essential to closing the critical period. Mice lacking a functional ngr1 gene retain developmental visual plasticity as adults and their visual acuity spontaneously improves after prolonged visual deprivation. Experiments employing conditional mouse genetics have revealed that ngr1 restricts plasticity within distinct circuits for ocular dominance and visual acuity. However, the mechanisms by which NgR1 limits plasticity have not been elucidated, in part because the subcellular localization and signal transduction of the protein are only partially understood. Here we explore potential mechanisms for NgR1 function in relation to manipulations that reactivate visual plasticity in adults and propose lines of investigation to address relevant gaps in knowledge.
机译:在视觉可塑性发展的关键时期,视力不一致会改变视觉皮层中神经元的反应能力。关键时期的后续关闭不仅巩固了神经功能,而且还限制了从先前异常视觉体验中恢复的敏锐度。尽管视觉系统的电路中存在特定于物种的差异,但这些特征得以保留。迄今为止,nogo-66受体1(ngr1)是少数几个对于结束关键时期至关重要的基因之一。缺乏功能性ngr1基因的小鼠在成年后仍保持发育的视觉可塑性,长期视力剥夺后其视力会自发改善。利用条件小鼠遗传学进行的实验表明,ngr1限制了眼球优势和视敏度在不同回路中的可塑性。但是,尚未阐明NgR1限制可塑性的机制,部分原因是仅部分了解了蛋白质的亚细胞定位和信号转导。在这里,我们探索与NgR1功能相关的潜在机制,以重新激活成年人的视觉可塑性,并提出调查途径以解决相关的知识空白。

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