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JWA 缺失增强海马齿状回神经发生和长时程增强,从而导致空间认知增强。

Lack of JWA Enhances Neurogenesis and Long-Term Potentiation in Hippocampal Dentate Gyrus Leading to Spatial Cognitive Potentiation.

机构信息

Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, Jiangsu, 210029, China.

Department of Physiology, Nanjing Medical University, Hanzhong Road 140, Nanjing, Jiangsu, 210029, China.

出版信息

Mol Neurobiol. 2016 Jan;53(1):355-368. doi: 10.1007/s12035-014-9010-4. Epub 2014 Nov 30.

Abstract

JWA (Arl6ip5), a homologous gene of glutamate-transporter-associated protein 3-18 (GTRAP3-18) and addicsin, is highly expressed in hippocampus. We generated systemic and neuronal JWA knockout (JWA-KO and JWA-nKO) mice to investigate the influence of JWA deficiency on spatial cognitive performance, process of neurogenesis, and induction of long-term potentiation (LTP) in hippocampal dentate gyrus (DG). In comparison with wild-type (WT) mice and JWA (loxP/loxP) (control of JWA-nKO) mice, 8-week-old JWA-KO mice and JWA-nKO mice showed spatial cognitive potentiation as assessed by Morris water maze test. In hippocampal DG of JWA-nKO mice, either survival and migration or neurite growth of newborn neurons were significantly enhanced without the changes in proliferation and differentiation of stem cells. In addition, the increase of LTP amplitude and the decline of LTP threshold were observed in DG, but not in CA1 region, of JWA-nKO mice compared to control mice. The levels of hippocampal FAK, Akt, and mTOR phosphorylation in JWA-nKO mice were higher than those in control mice. The PI3K or FAK inhibitor could abolish the enhanced neurogenesis and LTP induction in JWA-nKO mice, which was accompanied by disappearance of the spatial cognitive potentiation. The treatment of JWA-nKO mice with 3'-azido-3'-deoxythymidine (AZT), a telomerase inhibitor, suppressed not only the enhanced neurogenesis but also the enhanced LTP induction in DG, but it did not affect the LTP induction in CA1 region. The results suggest that the JWA deficiency through cascading FAK-PI3K-Akt-mTOR pathway increases the newborn neurons and enhances the LTP induction in hippocampal DG, which leads to the spatial cognitive potentiation.

摘要

JWA(Arl6ip5)是谷氨酸转运体相关蛋白 3-18(GTRAP3-18)和 Addicsin 的同源基因,在海马体中高度表达。我们生成了全身性和神经元性 JWA 敲除(JWA-KO 和 JWA-nKO)小鼠,以研究 JWA 缺乏对空间认知表现、神经发生过程以及海马齿状回(DG)长时程增强(LTP)诱导的影响。与野生型(WT)小鼠和 JWA(loxP/loxP)(JWA-nKO 的对照)小鼠相比,8 周龄的 JWA-KO 小鼠和 JWA-nKO 小鼠在 Morris 水迷宫测试中表现出空间认知增强。在 JWA-nKO 小鼠的海马 DG 中,新生神经元的存活、迁移或神经突生长显著增强,而干细胞的增殖和分化没有变化。此外,与对照小鼠相比,JWA-nKO 小鼠 DG 中观察到 LTP 幅度增加和 LTP 阈值降低,但 CA1 区没有。JWA-nKO 小鼠海马体中的 FAK、Akt 和 mTOR 磷酸化水平高于对照小鼠。PI3K 或 FAK 抑制剂可消除 JWA-nKO 小鼠中增强的神经发生和 LTP 诱导,同时伴有空间认知增强的消失。用端粒酶抑制剂 3'-叠氮-3'-脱氧胸苷(AZT)处理 JWA-nKO 小鼠,不仅抑制了增强的神经发生,也抑制了 DG 中增强的 LTP 诱导,但不影响 CA1 区的 LTP 诱导。结果表明,JWA 缺乏通过级联 FAK-PI3K-Akt-mTOR 途径增加新生神经元并增强海马 DG 中的 LTP 诱导,从而导致空间认知增强。

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