细胞自主减少CYFIP2不足以诱导老年小鼠海马CA1锥体神经元的阿尔茨海默病样病理。

IF 2.5 2区 生物学 Q3 CELL BIOLOGY
Ruiying Ma, Yinhua Zhang, Huiling Li, Hyae Rim Kang, Yoonhee Kim, Kihoon Han
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引用次数: 0

摘要

胞质fmr1相互作用蛋白2 (CYFIP2)是一种进化保守的多功能蛋白,调节神经元肌动蛋白细胞骨架、mRNA翻译和转运以及线粒体形态和功能。人类遗传学研究已经多次在被诊断为神经发育障碍的个体中发现CYFIP2基因的变体,支持其在正常神经元发育和功能中的关键作用。值得注意的是,最近的一些研究也表明CYFIP2水平降低与阿尔茨海默病(AD)之间存在机制联系。具体来说,在12个月大的Cyfip2杂合小鼠的海马中,发现了几种ad样病理,包括Tau磷酸化水平升高和胶质细胞形成,以及CA1锥体神经元树突棘的丢失。然而,对于由CYFIP2减少引起的ad样病理,详细的致病机制,如细胞类型及其发病回路,仍然未知。在本研究中,我们旨在通过检测CA1兴奋性锥体神经元中CYFIP2的细胞自主减少是否足以诱导海马ad样表型来解决这一问题。我们对12个月大的Cyfip2条件敲除小鼠进行了免疫组织化学、形态学和生化分析,这些小鼠在出生后降低了海马兴奋性锥体神经元CA1中Cyfip2的表达水平,但在CA3中没有。出乎意料的是,我们没有发现任何明显的ad样表型,这表明CA1兴奋性神经元特异性CYFIP2水平的降低不足以导致海马ad样病理。因此,我们提出CYFIP2在其他神经元和/或它们与CA1锥体神经元突触连接中的减少可能在CYFIP2杂合小鼠海马ad样表型中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cell-autonomous reduction of CYFIP2 is insufficient to induce Alzheimer's disease-like pathologies in the hippocampal CA1 pyramidal neurons of aged mice.

Cell-autonomous reduction of CYFIP2 is insufficient to induce Alzheimer's disease-like pathologies in the hippocampal CA1 pyramidal neurons of aged mice.

Cell-autonomous reduction of CYFIP2 is insufficient to induce Alzheimer's disease-like pathologies in the hippocampal CA1 pyramidal neurons of aged mice.

Cell-autonomous reduction of CYFIP2 is insufficient to induce Alzheimer's disease-like pathologies in the hippocampal CA1 pyramidal neurons of aged mice.

Cytoplasmic FMR1-interacting protein 2 (CYFIP2) is an evolutionarily conserved multifunctional protein that regulates the neuronal actin cytoskeleton, mRNA translation and transport, and mitochondrial morphology and function. Supporting its critical roles in proper neuronal development and function, human genetic studies have repeatedly identified variants of the CYFIP2 gene in individuals diagnosed with neurodevelopmental disorders. Notably, a few recent studies have also suggested a mechanistic link between reduced CYFIP2 level and Alzheimer's disease (AD). Specifically, in the hippocampus of 12-month-old Cyfip2 heterozygous mice, several AD-like pathologies were identified, including increased levels of Tau phosphorylation and gliosis, and loss of dendritic spines in CA1 pyramidal neurons. However, detailed pathogenic mechanisms, such as cell types and their circuits where the pathologies originate, remain unknown for AD-like pathologies caused by CYFIP2 reduction. In this study, we aimed to address this issue by examining whether the cell-autonomous reduction of CYFIP2 in CA1 excitatory pyramidal neurons is sufficient to induce AD-like phenotypes in the hippocampus. We performed immunohistochemical, morphological, and biochemical analyses in 12-month-old Cyfip2 conditional knock-out mice, which have postnatally reduced CYFIP2 expression level in CA1, but not in CA3, excitatory pyramidal neurons of the hippocampus. Unexpectedly, we could not find any significant AD-like phenotype, suggesting that the CA1 excitatory neuron-specific reduction of CYFIP2 level is insufficient to lead to AD-like pathologies in the hippocampus. Therefore, we propose that CYFIP2 reduction in other neurons and/or their synaptic connections with CA1 pyramidal neurons may be critically involved in the hippocampal AD-like phenotypes of Cyfip2 heterozygous mice.

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来源期刊
Animal Cells and Systems
Animal Cells and Systems 生物-动物学
CiteScore
4.50
自引率
24.10%
发文量
33
审稿时长
6 months
期刊介绍: Animal Cells and Systems is the official journal of the Korean Society for Integrative Biology. This international, peer-reviewed journal publishes original papers that cover diverse aspects of biological sciences including Bioinformatics and Systems Biology, Developmental Biology, Evolution and Systematic Biology, Population Biology, & Animal Behaviour, Molecular and Cellular Biology, Neurobiology and Immunology, and Translational Medicine.
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