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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >EFFECTS OF MONOCULAR DEPRIVATION ON THE SPATIAL PATTERN OF VISUALLY INDUCED EXPRESSION OF c-Fos PROTEIN
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EFFECTS OF MONOCULAR DEPRIVATION ON THE SPATIAL PATTERN OF VISUALLY INDUCED EXPRESSION OF c-Fos PROTEIN

机译:单眼剥夺对视视性C-FOS蛋白表达的空间模式的影响

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We studied the pattern of expression of a protein product (c-Fos) of immediate-early gene (IEG) in the visual cortex of rats and mice. The basal expression of c-Fos was very low and visual exposure revealed a large number of c-Fos immunopositive cells in the visual cortex. We found that monocular deprivation during the sensitive period of ocular dominance (OD) plasticity significantly changed both the amount and pattern of c-Fos expression upon monocular stimulation of either eye. The number of immunopositive cells in layer IV of binocular subfields of the primary visual cortex (Oc1B) ipsilateral to the stimulated eye was found to be the most sensitive index of the effects of monocular deprivation during the sensitive period, that is, opened eye stimulation induced significantly larger numbers of c-Fos immunopositive cells, whereas closed eye stimulation induced significantly smaller numbers compared with those induced by monocular stimulation in control animals. In the lateral geniculate nucleus and superior colliculus, the pattern of expression of c-Fos following monocular stimulation was not affected by preceding monocular deprivation. Monocular deprivation imposed after the sensitive period did not affect the pattern of induction of c-Fos. Notably, in age-matched old animals that had been raised in total darkness and then experienced monocular deprivation, the distribution and numbers of c-Fos-expressing cells in visual cortex exhibited the same alterations as found in young animals during the sensitive period. These findings suggest that the present activity mapping method using c-Fos as a molecular marker is useful for examining the activity-dependent regulation of cortical plasticity, and provides an alternative method to conventional electrophysiological recording. This method is particularly powerful when applied to knockout or transgenic mice in which sampling biases in electrophysiological recording have been considered inevitable. Furthermore, these findings suggest that c-Fos is involved in OD plasticity as an 1EG that transfers neuronal activity to late gene expression.
机译:我们在大鼠和小鼠的视觉皮层中研究了立即早期基因(IEG)的蛋白质产品(C-FOS)的表达模式。 C-FOS的基础表达非常低,视觉暴露在视觉皮层中显示大量C-FOS免疫阳性细胞。我们发现在眼部优势(OD)可塑性的敏感期间的单眼剥夺显着改变了在双眼刺激后C-FOS表达的量和模式。发现原发性视觉皮质(OC1b)致刺激眼睛的双目子场的IV层中的免疫阳性细胞的数量被发现是敏感期间单眼剥夺影响的最敏感指标,即诱导的眼睛刺激显着大量的C-FOS免疫阳性细胞,而闭眼刺激与通过对照动物的单眼刺激诱导的那些相比诱导的数量明显较小。在横向核状核和优异的小核中,通过单眼剥夺,单眼刺激后C-FOS的表达模式不受单像剥夺的影响。在敏感期后不影响C-FOS的诱导模式后施加的单眼剥夺。值得注意的是,在已经在完全黑暗的被提出,然后年龄匹配的旧动物经历单眼剥夺,在视觉皮层的c-fos表达细胞的分布和数量显示出相同的变化作为在敏感期幼龄动物中发现。这些结果表明,使用c-Fos蛋白作为分子标记本活动映射方法是用于检查皮质可塑性的活性依赖性调节是有用的,并提供了一种替代的方法来常规电生理记录。当应用于敲除或转基因小鼠时,该方法特别强大,其中电生理记录中的采样偏差被认为是不可避免的。此外,这些发现表明,C-FOS参与OD可塑性,作为转移神经元活性至后期基因表达的1G。

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