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探索视杆细胞通路中的视网膜内层回路:突变小鼠中c-fos激活的比较

Probing inner retinal circuits in the rod pathway: a comparison of c-fos activation in mutant mice.

作者信息

Hanzlicek Brett W, Peachey Neal S, Grimm Christian, Hagstrom Stephanie A, Ball Sherry L

机构信息

Cleveland Department of Veterans Affairs Medical Center, Cleveland, OH 44106, USA.

出版信息

Vis Neurosci. 2004 Nov-Dec;21(6):873-81. doi: 10.1017/S0952523804216078.

Abstract

We have used wild-type mice and mice possessing defects in specific retinal circuits in order to more clearly define functional circuits of the inner retina. The retina of the nob mouse lacks communication between photoreceptors and depolarizing bipolar cells (DBCs). Thus, all light driven activity in the nob mouse is mediated via remaining hyperpolarizing bipolar cell (HBC) circuits. Transducin null (Tr alpha-/-) mice lack rod photoreceptor activity and thus remaining retinal circuits are solely generated via cone photoreceptor activity. Activation in inner retinal circuits in each of these mice was identified by monitoring light-induced expression of an immediate early gene, c-fos. The number of cells expressing c-fos in the inner retina was dependent upon stimulus intensity and was altered in a systematic fashion in mice with known retinal mutations. To determine whether c-fos is activated via circuits other than photoreceptors in the outer retina, we examined c-fos expression in tulp1-/- mice that lack photoreceptors in the outer retina; these mice showed virtually no c-fos activity following light exposure. Double-labeling immunohistochemical studies were carried out to more clearly define the population of c-fos expressing amacrine cells. Our results indicate that c-fos may be used to map functional circuits in the retina.

摘要

我们使用了野生型小鼠以及特定视网膜回路存在缺陷的小鼠,以便更清晰地界定视网膜内层的功能回路。nob小鼠的视网膜在光感受器与去极化双极细胞(DBCs)之间缺乏信号传导。因此,nob小鼠中所有由光驱动的活动都是通过剩余的超极化双极细胞(HBC)回路介导的。转导素基因敲除(Tr alpha-/-)小鼠缺乏视杆光感受器活性,因此剩余的视网膜回路完全由视锥光感受器活性产生。通过监测即刻早期基因c-fos的光诱导表达,确定了这些小鼠中每个小鼠视网膜内层回路的激活情况。视网膜内层中表达c-fos的细胞数量取决于刺激强度,并且在具有已知视网膜突变的小鼠中以系统的方式发生改变。为了确定c-fos是否通过外视网膜中除光感受器之外的回路被激活,我们检查了在外视网膜中缺乏光感受器的tulp1-/-小鼠中的c-fos表达;这些小鼠在光照后几乎没有c-fos活性。进行了双重标记免疫组织化学研究,以更清晰地界定表达c-fos的无长突细胞群体。我们的结果表明,c-fos可用于绘制视网膜中的功能回路。

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