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微小RNA-502-3p调节海马神经元中的γ-氨基丁酸A型受体亚基、突触蛋白和线粒体形态。

MicroRNA-502-3p modulates the GABA A subunits, synaptic proteins and mitochondrial morphology in hippocampal neurons.

作者信息

Sharma Bhupender, Rodarte Daniela, Goyal Gunjan, Rodriguez Sheryl, Kumar Subodh

出版信息

bioRxiv. 2025 Jan 13:2025.01.09.632229. doi: 10.1101/2025.01.09.632229.

Abstract

MicroRNA-502-3p (MiR-502-3p), a synapse enriched miRNA is considerably implicated in Alzheimer's disease (AD). Our previous study found the high expression level of miR-502-3p in AD synapses relative to controls. Further, miR-502-3p was found to modulate the GABAergic synapse function via modulating the GABA A receptor subunit α-1 (GABRA1) protein. The current study is attempted to examine the impact of miR-502-3p on other GABA subunit proteins, synaptic proteins, mitochondrial morphology and other hippocampal neuron genes. Mouse hippocampal neuronal (HT22) cells were transfected with miR-502-3p overexpression (OE) vector, miR-502-3p sponge (suppression) vector and scramble control vector. MiR-502-3p vectors transfection was confirmed by fluorescence microscopy. MiR-502-3p expression and expression was confirmed by qRT-PCR and miRNAScope hybridization. GABA A subunit and synaptic proteins were studied by immunoblotting analysis and mitochondrial morphology was analyzed by transmission electron microscopy (TEM) analysis. Further, Affymetrix gene array analysis was conducted in miR-502-3p overexpressed and suppressed cells. Our results observed that elevated miR-502-3p, negatively modulates the GABRA1 level. The levels of GABA A subunit and synaptic proteins were reduced by ectopic expression of miR-502-3p and increase by miR-502-3p suppression. The mitochondrial morphology was found to be improved in-terms of their number and length in miR-502-3p suppressed cells. Further, Gene array analysis unveiled the deregulation of several genes by miR-502-3p, which are associated with oxidative stress, immune response and synaptic function. These results provide new insights and an update to understand the biological roles of miR-502-3p in regulation of neuron function and synaptic activity.

摘要

微小RNA-502-3p(MiR-502-3p)是一种在突触中高度富集的微小RNA,与阿尔茨海默病(AD)密切相关。我们之前的研究发现,与对照组相比,AD突触中MiR-502-3p的表达水平较高。此外,发现MiR-502-3p通过调节GABAA受体亚基α-1(GABRA1)蛋白来调节GABA能突触功能。本研究试图探讨MiR-502-3p对其他GABA亚基蛋白、突触蛋白、线粒体形态以及其他海马神经元基因的影响。用MiR-502-3p过表达(OE)载体、MiR-502-3p海绵(抑制)载体和乱序对照载体转染小鼠海马神经元(HT22)细胞。通过荧光显微镜确认MiR-502-3p载体的转染。通过qRT-PCR和miRNAScope杂交确认MiR-502-3p的表达。通过免疫印迹分析研究GABAA亚基和突触蛋白,并通过透射电子显微镜(TEM)分析线粒体形态。此外,在MiR-502-3p过表达和抑制的细胞中进行Affymetrix基因芯片分析。我们的结果观察到,MiR-502-3p水平升高会对GABRA1水平产生负调节作用。MiR-502-3p的异位表达会降低GABAA亚基和突触蛋白的水平,而抑制MiR-502-3p则会使其水平升高。在MiR-502-3p抑制的细胞中,线粒体形态在数量和长度方面有所改善。此外,基因芯片分析揭示了MiR-502-3p对几个基因的调控异常,这些基因与氧化应激、免疫反应和突触功能有关。这些结果为理解MiR-502-3p在调节神经元功能和突触活动中的生物学作用提供了新的见解和更新。

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