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drebrin A在树突棘可塑性和突触功能中的作用:对神经疾病的影响。

Role of drebrin A in dendritic spine plasticity and synaptic function: Implications in neurological disorders.

作者信息

Ivanov Anton, Esclapez Monique, Ferhat Lotfi

机构信息

INSERM U 751; Université d'Aix-Marseille; Hôpital de la Timone; Marseille, France.

出版信息

Commun Integr Biol. 2009 May;2(3):268-70. doi: 10.4161/cib.2.3.8166.

Abstract

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, postsynaptic sides of excitatory glutamatergic synapses. More recently, Ferhat and colleagues reported the functional role of drebrin A in regulating synaptic transmission. Indeed, our study showed that overexpression of drebrin A induced an increase of glutamatergic but not GABAergic synapses and resulted in the alteration of the normal excitatory-inhibitory ratio in favor of excitation in mature hippocampal neurons. Downregulation of drebrin A expression by antisense oligonucleotides resulted in the decrease of both miniature- glutamatergic and GABAergic synaptic activities without affecting the excitatory-inhibitory ratio. Studies performed in heterologous cells revealed that drebrin A reorganized the actin filaments and stabilized them and that these effects are depend upon its actin-binding domain. These results suggest that drebrin A regulates dendritic spine morphology, size and density, presumably via regulation of actin cytoskeleton remodeling and dynamics. These data demonstrate for the first time that an actin-binding protein such as drebrin A regulates both glutamatergic and GABAergic synaptic transmissions, probably through an increase of active synaptic site density for glutamatergic transmission and through homeostatic mechanisms for the GABAergic one.It is appealing to suggest that abnormalities in the expression of drebrin A may result in aberrant synapse development and/or loss of synapses leading to synaptic dysfunction, which underlies cognitive impairment accompanying neurological disorders such as Alzheimer's disease, Down syndrome as well as normal aging.

摘要

双调蛋白A是F-肌动蛋白中含量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步增加。双调蛋白A特别集中在树突棘,即兴奋性谷氨酸能突触的突触后侧。最近,费哈特及其同事报道了双调蛋白A在调节突触传递中的功能作用。事实上,我们的研究表明,双调蛋白A的过表达导致谷氨酸能突触而非GABA能突触增加,并导致成熟海马神经元中正常的兴奋-抑制比例发生改变,有利于兴奋。反义寡核苷酸下调双调蛋白A的表达导致微小谷氨酸能和GABA能突触活动均减少,而不影响兴奋-抑制比例。在异源细胞中进行的研究表明,双调蛋白A重组并稳定了肌动蛋白丝,且这些作用取决于其肌动蛋白结合结构域。这些结果表明,双调蛋白A可能通过调节肌动蛋白细胞骨架的重塑和动力学来调节树突棘的形态、大小和密度。这些数据首次证明,像双调蛋白A这样的肌动蛋白结合蛋白可能通过增加谷氨酸能传递的活性突触位点密度以及通过GABA能传递的稳态机制来调节谷氨酸能和GABA能突触传递。有人提出,双调蛋白A表达异常可能导致突触发育异常和/或突触丧失,进而导致突触功能障碍,这是阿尔茨海默病、唐氏综合征以及正常衰老等神经疾病伴随的认知障碍的基础。

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