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Dp71 肌营养不良蛋白缺乏改变前额叶皮层的兴奋-抑制平衡和执行功能。

Dp71-Dystrophin Deficiency Alters Prefrontal Cortex Excitation-Inhibition Balance and Executive Functions.

机构信息

Neuroscience Paris-Saclay Institute (Neuro-PSI), UMR 9197, Université Paris Sud, CNRS, Université Paris Saclay, Orsay, France.

Laboratoire de Toxinologie moléculaire et Biotechnologies, Institut des Sciences du Vivant Frédéric Joliot, CEA de Saclay, 91191, Gif-sur-Yvette, France.

出版信息

Mol Neurobiol. 2019 Apr;56(4):2670-2684. doi: 10.1007/s12035-018-1259-6. Epub 2018 Jul 27.

Abstract

In the Duchenne muscular dystrophy (DMD) syndrome, mutations affecting expression of Dp71, the main dystrophin isoform of the multipromoter dmd gene in brain, have been associated with intellectual disability and neuropsychiatric disturbances. Patients' profile suggests alterations in prefrontal cortex-dependent executive processes, but the specific dysfunctions due to Dp71 deficiency are unclear. Dp71 is involved in brain ion homeostasis, and its deficiency is expected to increase neuronal excitability, which might compromise the integrity of neuronal networks undertaking high-order cognitive functions. Here, we used electrophysiological (patch clamp) and behavioral techniques in a transgenic mouse that display a selective loss of Dp71 and no muscular dystrophy, to identify changes in prefrontal cortex excitatory/inhibitory (E/I) balance and putative executive dysfunctions. We found prefrontal cortex E/I balance is shifted toward enhanced excitation in Dp71-null mice. This is associated with a selective alteration of AMPA receptor-mediated glutamatergic transmission and reduced synaptic plasticity, while inhibitory transmission is unaffected. Moreover, Dp71-null mice display deficits in cognitive processes that depend on prefrontal cortex integrity, such as cognitive flexibility and sensitivity of spatial working memory to proactive interference. Our data suggest that impaired cortical E/I balance and executive dysfunctions contribute to the intellectual and behavioral disturbances associated with Dp71 deficiency in DMD, in line with current neurobehavioral models considering these functions as key pathophysiological factors in various neurodevelopmental disorders. These new insights in DMD neurobiology also suggest new directions for therapeutic developments targeting excitatory neurotransmission, as well as for guidance of academic environment in severely affected DMD children.

摘要

在杜氏肌营养不良症 (DMD) 综合征中,影响多启动子 dmd 基因中主要的肌营养不良蛋白同工型 Dp71 在大脑中表达的突变与智力障碍和神经精神障碍有关。患者的特征表明前额叶皮层依赖的执行过程发生改变,但由于 Dp71 缺乏引起的具体功能障碍尚不清楚。Dp71 参与大脑离子稳态,其缺乏预计会增加神经元兴奋性,这可能会损害执行高级认知功能的神经网络的完整性。在这里,我们使用电生理学(膜片钳)和行为技术在一种转基因小鼠中,该小鼠选择性地失去了 Dp71 而没有肌肉营养不良,以确定前额叶皮层兴奋性/抑制性(E/I)平衡的变化和潜在的执行功能障碍。我们发现 Dp71 缺失小鼠的前额叶皮层 E/I 平衡向增强的兴奋转移。这与 AMPA 受体介导的谷氨酸能传递的选择性改变和突触可塑性降低有关,而抑制性传递不受影响。此外,Dp71 缺失小鼠在依赖前额叶皮层完整性的认知过程中表现出缺陷,例如认知灵活性和空间工作记忆对前摄干扰的敏感性。我们的数据表明,皮质 E/I 平衡受损和执行功能障碍导致 DMD 中与 Dp71 缺乏相关的智力和行为障碍,这与当前将这些功能视为各种神经发育障碍的关键病理生理因素的神经行为模型一致。这些 DMD 神经生物学的新见解还为靶向兴奋性神经传递的治疗开发以及对受严重影响的 DMD 儿童的学术环境的指导提供了新的方向。

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