首页> 美国卫生研究院文献>International Journal of Cell Biology >Potential Role of Drebrin A an F-Actin Binding Protein in Reactive Synaptic Plasticity after Pilocarpine-Induced Seizures: Functional Implications in Epilepsy
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Potential Role of Drebrin A an F-Actin Binding Protein in Reactive Synaptic Plasticity after Pilocarpine-Induced Seizures: Functional Implications in Epilepsy

机译:Drebrin AF-肌动蛋白结合蛋白在毛果芸香碱诱发癫痫发作后的反应性突触可塑性中的潜在作用:癫痫的功能含义。

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摘要

Several neurological disorders characterized by cognitive deficits, including Alzheimer's disease, down syndrome, and epilepsy exhibit abnormal spine density and/or morphology. Actin-based cytoskeleton network dynamics is critical for the regulation of spine morphology and synaptic function. In this paper, I consider the functions of drebrin A in cell shaping, spine plasticity, and synaptic function. Developmentally regulated brain protein (drebrin A) is one of the most abundant neuron-specific binding proteins of F-actin and its expression is increased in parallel with synapse formation. Drebrin A is particularly concentrated in dendritic spines receiving excitatory inputs. Our recent findings point to a critical role of DA in dendritic spine structural integrity and stabilization, likely via regulation of actin cytoskeleton dynamics, and glutamatergic synaptic function that underlies the development of spontaneous recurrent seizures in pilocarpine-treated animals. Further research into this area may provide useful insights into the pathology of status epilepticus and epileptogenic mechanisms and ultimately may provide the basis for future treatment options.
机译:几种以认知缺陷为特征的神经系统疾病,包括阿尔茨海默氏病,唐氏综合症和癫痫病,均表现出异常的脊柱密度和/或形态。基于肌动蛋白的细胞骨架网络动力学对于调节脊柱形态和突触功能至关重要。在本文中,我考虑了drebrin A在细胞塑形,脊柱可塑性和突触功能中的功能。发育受调节的脑蛋白(Drebrin A)是F-肌动蛋白最丰富的神经元特异性结合蛋白之一,其表达与突触形成同时增加。 Drebrin A特别集中在接受兴奋性输入的树突棘中。我们最近的发现指出,DA在树突棘结构的完整性和稳定性中起着关键作用,这可能是通过调节肌动蛋白的细胞骨架动力学和谷氨酸能突触功能来进行的,这些作用是毛果芸香碱治疗动物自发性反复发作的基础。对该领域的进一步研究可为癫痫持续状态的病理学和致痫机制提供有用的见识,并最终为将来的治疗选择提供基础。

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