在动力蛋白-2连锁常染色体显性核心性肌病小鼠模型的海马神经元中,GluA1的突触可用性降低。

IF 2.9 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
Carolina Flores-Muñoz, Marjorie Labraña-Allende, Michelle Mattar-Araos, Barbara Gomez-Soto, Joaquin Silva-Guzman, Lorena Prado-Vega, Jorge Arriagada-Díaz, María Jose Guerra-Fernández, Jorge A Bevilacqua, Marc Bitoun, Ana M Cárdenas, Alvaro O Ardiles, Arlek M Gonzalez-Jamett
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引用次数: 0

摘要

目的常染色体显性核心性肌病(AD-CNM)是一种由编码动力蛋白-2 (DNM2)的DNM2基因突变引起的神经肌肉先天性疾病。AD-CNM的主要临床特征是骨骼肌进行性无力和萎缩。然而,认知缺陷也有报道,表明ad - cnm引起的DNM2突变也可能影响中枢神经系统(CNS)。我们最近证明,在含有DNM2 p.R465W突变的转基因敲入(KI)小鼠的大脑中出现兴奋性突触传递缺陷,这是AD-CNM最常见的原因。由于DNM2调节哺乳动物兴奋性突触传递的主要介质谷氨酸- ampa受体(AMPAR)的运输,因此AD-CNM可能会影响AMPAR的突触可用性。这项工作的主要目的是评估p.R465W DNM2突变对KI小鼠大脑中glua1 - ampar亚基突触可用性的影响。方法进行实验定量研究。采用亚细胞分离和western blot方法定量测定了WT和KI小鼠海马总匀浆中GluA1和突触蛋白的表达以及脑内突触后密度(psd)。利用全内反射显微镜(TIRFM)分析了GluA1在海马培养神经元质膜中的到达和停留时间。结果虽然我们在海马总匀浆中没有观察到GluA1表达的显著差异,但与野生型(WT)脑相比,KI脑的psd中GluA1表达显著降低。此外,与WT神经元相比,KI海马神经元表面膜上GluA1的停留时间明显减少。结论DNM2 p.R465W基因突变扰乱了海马神经元突触glua1的可用性,可能导致兴奋性突触传递的缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The synaptic availability of GluA1 is reduced in hippocampal neurons of a murine model of dynamin-2 linked autosomal dominant centronuclear myopathy.

The synaptic availability of GluA1 is reduced in hippocampal neurons of a murine model of dynamin-2 linked autosomal dominant centronuclear myopathy.

The synaptic availability of GluA1 is reduced in hippocampal neurons of a murine model of dynamin-2 linked autosomal dominant centronuclear myopathy.

ObjectiveAutosomal dominant centronuclear myopathy (AD-CNM) is a neuromuscular congenital disease caused by mutations in the DNM2 gene that encodes dynamin-2 (DNM2). The main clinical features of AD-CNM are progressive weakness and atrophy of skeletal muscles. However, cognitive defects have also been reported, suggesting that AD-CNM-causing mutations in DNM2 might also affect central nervous system (CNS). We recently demonstrated that defects in excitatory synaptic transmission occur in the brain of transgenic knock-in (KI) mice harboring the DNM2 p.R465W mutation, the most common causing AD-CNM. As DNM2 regulates the trafficking of glutamate-AMPA receptors (AMPARs), major mediators of excitatory synaptic transmission in mammals, it is feasible that the synaptic availability of AMPAR is affected in the context of AD-CNM. The main objective of this work was to evaluate the impact of the p.R465W DNM2 mutation on the GluA1-AMPAR-subunit synaptic availability in the brain of KI mice.MethodsWe addressed an experimental quantitative study. By using subcellular fractionation and western blot we quantified the expression of GluA1 and synaptic proteins in hippocampal total homogenates and postsynaptic densities (PSDs) in the brain of WT and KI mice. By total internal reflection microscopy (TIRFM) we also analyzed the arrival and residence time of GluA1 into the plasma membrane of hippocampal cultured neurons.ResultsAlthough we did not observe significant differences in the GluA1 expression in hippocampal total homogenates, it was significantly reduced in the PSDs of KI compared to wild-type (WT) brains. Moreover, the residence time of GluA1 in the surface membranes of KI hippocampal neurons was significantly reduced compared to WT neurons.ConclusionThese data strongly suggest that the p.R465W mutation in DNM2 perturbs synaptic GluA1-availability in hippocampal neurons, likely leading to defects in excitatory synaptic transmission.

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来源期刊
Science Progress
Science Progress Multidisciplinary-Multidisciplinary
CiteScore
3.80
自引率
0.00%
发文量
119
期刊介绍: Science Progress has for over 100 years been a highly regarded review publication in science, technology and medicine. Its objective is to excite the readers'' interest in areas with which they may not be fully familiar but which could facilitate their interest, or even activity, in a cognate field.
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