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前脑神经元中的Shp2调节小鼠的突触可塑性、运动能力和记忆形成。

Shp2 in forebrain neurons regulates synaptic plasticity, locomotion, and memory formation in mice.

作者信息

Kusakari Shinya, Saitow Fumihito, Ago Yukio, Shibasaki Koji, Sato-Hashimoto Miho, Matsuzaki Yasunori, Kotani Takenori, Murata Yoji, Hirai Hirokazu, Matsuda Toshio, Suzuki Hidenori, Matozaki Takashi, Ohnishi Hiroshi

机构信息

Laboratory of Biosignal Sciences, Institute for Molecular and Cellular Regulation, Gunma University, Gunma, Japan.

Department of Pharmacology, Nippon Medical School, Tokyo, Japan.

出版信息

Mol Cell Biol. 2015 May;35(9):1557-72. doi: 10.1128/MCB.01339-14. Epub 2015 Feb 23.

Abstract

Shp2 (Src homology 2 domain-containing protein tyrosine phosphatase 2) regulates neural cell differentiation. It is also expressed in postmitotic neurons, however, and mutations of Shp2 are associated with clinical syndromes characterized by mental retardation. Here we show that conditional-knockout (cKO) mice lacking Shp2 specifically in postmitotic forebrain neurons manifest abnormal behavior, including hyperactivity. Novelty-induced expression of immediate-early genes and activation of extracellular-signal-regulated kinase (Erk) were attenuated in the cerebral cortex and hippocampus of Shp2 cKO mice, suggestive of reduced neuronal activity. In contrast, ablation of Shp2 enhanced high-K(+)-induced Erk activation in both cultured cortical neurons and synaptosomes, whereas it inhibited that induced by brain-derived growth factor in cultured neurons. Posttetanic potentiation and paired-pulse facilitation were attenuated and enhanced, respectively, in hippocampal slices from Shp2 cKO mice. The mutant mice also manifested transient impairment of memory formation in the Morris water maze. Our data suggest that Shp2 contributes to regulation of Erk activation and synaptic plasticity in postmitotic forebrain neurons and thereby controls locomotor activity and memory formation.

摘要

Shp2(含Src同源2结构域的蛋白酪氨酸磷酸酶2)调节神经细胞分化。然而,它也在有丝分裂后的神经元中表达,并且Shp2的突变与以智力迟钝为特征的临床综合征有关。在此我们表明,在有丝分裂后的前脑神经元中特异性缺失Shp2的条件性敲除(cKO)小鼠表现出异常行为,包括多动。在Shp2 cKO小鼠的大脑皮层和海马体中,新奇诱导的即刻早期基因表达和细胞外信号调节激酶(Erk)的激活减弱,提示神经元活性降低。相反,在培养的皮层神经元和突触体中,Shp2的缺失增强了高钾(K⁺)诱导的Erk激活,而在培养的神经元中它抑制了脑源性神经营养因子诱导的激活。在来自Shp2 cKO小鼠的海马切片中,强直后增强和双脉冲易化分别减弱和增强。突变小鼠在莫里斯水迷宫中也表现出记忆形成的短暂受损。我们的数据表明,Shp2有助于调节有丝分裂后的前脑神经元中的Erk激活和突触可塑性,从而控制运动活动和记忆形成。

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