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应激颗粒组装因子G3BP1的缺乏会导致神经元突触可塑性和钙稳态异常。

Deficiency of G3BP1, the stress granules assembly factor, results in abnormal synaptic plasticity and calcium homeostasis in neurons.

作者信息

Martin Sophie, Zekri Latifa, Metz Alexandra, Maurice Tangui, Chebli Karim, Vignes Michel, Tazi Jamal

机构信息

Institut de Génétique Moléculaire de Montpellier, UMR 5535 CNRS, Université Montpellier 2, Montpellier cedex 5, France.

INSERM U 710, Université Montpellier 2, Montpellier cedex 5, France.

出版信息

J Neurochem. 2013 Apr;125(2):175-84. doi: 10.1111/jnc.12189. Epub 2013 Mar 6.

Abstract

Ras-GAP SH3-domain-binding protein, G3BP, is an important component in the assembly of stress granules (SGs), which are cytoplasmic aggregates assembled following translational stress. To assess the physiological function of G3BP, we generated viable G3bp1-knockout (KO) mice, which demonstrated behavioral defects linked to the CNS-associated with ataxia phenotype. Immunohistochemistry pinpointed high expression of G3BP in the cytoplasm of hippocampal neurons and Purkinje cells of the cerebellum of wild-type mice. Also, electrophysiological measurements revealed that the absence of G3BP1 leads to an enhancement of short-term potentiation (STP) and long-term depression in the CA1 area of G3bp1 KO mice compared with wild-type mice. Consistently, G3BP1 deficiency in neurons leads to an increase in intracellular calcium and calcium release in response to (S)-3,5-Dihydroxyphenylglycine, a selective agonist of group I metabotropic glutamate receptors. These results show, for the first time, a requirement for G3BP1 in the control of neuronal plasticity and calcium homeostasis and further establish a direct link between SG formation and neurodegenerative diseases.

摘要

Ras-GAP SH3结构域结合蛋白G3BP是应激颗粒(SGs)组装的重要组成部分,应激颗粒是在翻译应激后形成的细胞质聚集体。为了评估G3BP的生理功能,我们培育出了可存活的G3bp1基因敲除(KO)小鼠,这些小鼠表现出与共济失调表型相关的中枢神经系统行为缺陷。免疫组织化学显示野生型小鼠海马神经元细胞质和小脑浦肯野细胞中G3BP高表达。此外,电生理测量表明,与野生型小鼠相比,G3bp1基因敲除小鼠CA1区缺乏G3BP1会导致短期突触增强(STP)和长期突触抑制增强。一致的是,神经元中G3BP1的缺乏会导致细胞内钙增加以及对I组代谢型谷氨酸受体的选择性激动剂(S)-3,5-二羟基苯甘氨酸产生钙释放。这些结果首次表明G3BP1在控制神经元可塑性和钙稳态中是必需的,并进一步在应激颗粒形成与神经退行性疾病之间建立了直接联系。

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