Cell-autonomous reduction of CYFIP2 changes dendrite length, dendritic protrusion morphology, and inhibitory synapse density in the hippocampal CA1 pyramidal neurons of 17-month-old mice.

IF 2.5 2区 生物学 Q3 CELL BIOLOGY Animal Cells and Systems Pub Date : 2024-05-31 eCollection Date: 2024-01-01 DOI:10.1080/19768354.2024.2360740
Yoonhee Kim, Ruiying Ma, Yinhua Zhang, Hyae Rim Kang, U Suk Kim, Kihoon Han
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Abstract

The cytoplasmic FMR1-interacting protein 2 (CYFIP2) have diverse molecular functions in neurons, including the regulation of actin polymerization, mRNA translation, and mitochondrial morphology and function. Mutations in the CYFIP2 gene are associated with early-onset epilepsy and neurodevelopmental disorders, while decreases in its protein levels are linked to Alzheimer's disease (AD). Notably, previous research has revealed AD-like phenotypes, such as dendritic spine loss, in the hippocampal CA1 pyramidal neurons of 12-month-old Cyfip2 heterozygous mice but not of age-matched CA1 pyramidal neuron-specific Cyfip2 conditional knock-out (cKO) mice. This study aims to investigate whether dendritic spine loss in Cyfip2 cKO mice is merely delayed compared to Cyfip2 heterozygous mice, and to explore further neuronal phenotypes regulated by CYFIP2 in aged mice. We characterized dendrite and dendritic protrusion morphologies, along with excitatory/inhibitory synapse densities in CA1 pyramidal neurons of 17-month-old Cyfip2 cKO mice. Overall dendritic branching was normal, with a reduction in the length of basal, not apical, dendrites in CA1 pyramidal neurons of Cyfip2 cKO mice. Furthermore, while dendritic protrusion density remained normal, alterations were observed in the length of mushroom spines and the head volume of stubby spines in basal, not apical, dendrites of Cyfip2 cKO mice. Although excitatory synapse density remained unchanged, inhibitory synapse density increased in apical, not basal, dendrites of Cyfip2 cKO mice. Consequently, a cell-autonomous reduction of CYFIP2 appears insufficient to induce dendritic spine loss in CA1 pyramidal neurons of aged mice. However, CYFIP2 is required to maintain normal dendritic length, dendritic protrusion morphology, and inhibitory synapse density.

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细胞自主减少 CYFIP2 会改变 17 个月大小鼠海马 CA1 锥体神经元的树突长度、树突突起形态和抑制性突触密度。
细胞质 FMR1 结合蛋白 2(CYFIP2)在神经元中具有多种分子功能,包括调节肌动蛋白聚合、mRNA 翻译以及线粒体形态和功能。CYFIP2 基因突变与早发性癫痫和神经发育障碍有关,而其蛋白水平的降低则与阿尔茨海默病(AD)有关。值得注意的是,先前的研究发现,12个月大的Cyfip2杂合小鼠的海马CA1锥体神经元出现了类似于AD的表型,如树突棘缺失,但年龄匹配的CA1锥体神经元特异性Cyfip2条件性敲除(cKO)小鼠却没有出现这种表型。本研究旨在探讨与 Cyfip2 杂合子小鼠相比,Cyfip2 cKO 小鼠的树突棘丢失是否只是延迟,并进一步探讨 CYFIP2 在老年小鼠中调控的神经元表型。我们对 17 个月大的 Cyfip2 cKO 小鼠 CA1 锥体神经元的树突和树突突起形态以及兴奋/抑制突触密度进行了鉴定。Cyfip2 cKO小鼠CA1锥体神经元的树突分枝总体正常,但基部树突长度缩短,而非顶端树突长度缩短。此外,虽然树突突起密度保持正常,但在 Cyfip2 cKO 小鼠的基底树突(而非顶端树突)中,观察到蘑菇棘的长度和粗壮棘的头部体积发生了变化。虽然兴奋性突触密度保持不变,但抑制性突触密度在Cyfip2 cKO小鼠的顶端树突而非基部树突中有所增加。因此,细胞自主减少 CYFIP2 似乎不足以诱导老龄小鼠 CA1 锥体神经元树突棘的缺失。然而,CYFIP2 是维持正常树突长度、树突突起形态和抑制性突触密度所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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