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首页> 外文期刊>The Journal of Comparative Neurology >Phenotypic changes in calbindin D28K immunoreactivity in the hippocampus of Fmr1 knockout mice.
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Phenotypic changes in calbindin D28K immunoreactivity in the hippocampus of Fmr1 knockout mice.

机译:Fmr1基因敲除小鼠海马中钙结合蛋白D28K免疫反应性的表型变化。

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Fragile X syndrome (FXS), the most prevalent form of inherited mental retardation, is caused by the lack of FMRP (fragile mental retardation protein) as a result of the transcriptional silencing of the FMR1 gene. Here we analyze the immunohistochemical expression of the calbindin D28K protein in the hippocampus of Fmr1 knockout (KO) mice and compare it with that of their wildtype (WT) littermates. The spatial distribution pattern of calbindin-immunoreactive cells in the hippocampus was similar in WT and KO mice but for each age studied (ranging from 3.5-8 months) the dentate gyrus of Fmr1-KO mice showed a significant reduction in calbindin-immunoreactive granule cells. Also, the number of calbindin-immunoreactive cells was reduced in the CA1 pyramidal layer in KO mice compared to their WT littermates. In addition, Frm1-KO mice showed a group of calbindin-immunoreactive cells located only in the left CA3b subregion that was only sometimes observed in WT mice. Overall, the absence of FMRP results in a dysregulation of the calbindin protein expression in the hippocampus. This dysregulation is cell type- and time-dependent and as a consequence key elements of the hippocampal trisynaptic circuitry may lack calbindin in critical periods for normal memory/learning abilities to be achieved and may explain some of the FXS symptoms observed in the Fmr1-KO mouse model.
机译:脆性X综合征(FXS)是遗传性智力低下的最普遍形式,是由于FMR1基因的转录沉默导致缺少FMRP(脆弱性智力低下蛋白)引起的。在这里,我们分析了Fmr1基因敲除(KO)小鼠海马中calbindin D28K蛋白的免疫组织化学表达,并将其与野生型(WT)同窝仔进行比较。 WT和KO小鼠海马中Calbindin免疫反应细胞的空间分布模式相似,但对于每个研究的年龄(3.5-8个月),Fmr1-KO小鼠的齿状回均显示Calbindin免疫反应性颗粒细胞显着减少。而且,与它们的WT同窝仔相比,KO小鼠的CA1锥体层中的钙结合蛋白免疫反应性细胞的数量减少了。此外,Frm1-KO小鼠显示出一组钙调蛋白免疫反应性细胞仅位于左CA3b子区域,有时仅在WT小鼠中观察到。总体而言,缺乏FMRP会导致海马中calbindin蛋白表达失调。这种失调与细胞类型和时间有关,因此,海马三突触回路的关键元件在关键时期可能缺乏钙结合蛋白,无法实现正常的记忆/学习能力,并且可以解释Fmr1-KO中观察到的某些FXS症状。鼠标模型。

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