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日本三角涡虫谷氨酸脱羧酶基因的鉴定及γ-氨基丁酸能神经系统的分布

Identification of glutamic acid decarboxylase gene and distribution of GABAergic nervous system in the planarian Dugesia japonica.

作者信息

Nishimura K, Kitamura Y, Umesono Y, Takeuchi K, Takata K, Taniguchi T, Agata K

机构信息

Department of Neurobiology, and 21st Century Center of Excellence Program, Kyoto Pharmaceutical University, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.

出版信息

Neuroscience. 2008 Jun 2;153(4):1103-14. doi: 10.1016/j.neuroscience.2008.03.026. Epub 2008 Mar 22.

Abstract

The planarian Dugesia japonica has a relatively well-organized CNS that includes the brain and the ventral nerve cords, and also has high regenerative capacity derived from pluripotent stem cells present in the mesenchymal space throughout the body. Glutamic acid decarboxylase (GAD) is the enzyme that converts glutamic acid into GABA, a major inhibitory neurotransmitter. In this study, we first identified a full-length GAD gene (DjGAD, D. japonica glutamic acid decarboxylase) in the planarian D. japonica. Whole-mount in situ hybridization revealed that a few cells expressed DjGAD mRNA, and these cells were located in both the head and pharynx regions. In order to examine the distribution pattern of DjGAD protein, we generated a mouse monoclonal anti-DjGAD antibody. The distribution pattern of DjGAD protein was very similar to that of DjGAD mRNA. A neural network of DjGAD-immunopositive cells was also clearly observed. In addition, we examined the immunofluorescence during the process of regeneration of the head from the tail piece. At day 3 of regeneration, we could detect newly formed DjGAD-immunopositive neurons in the anterior region. During day 5-7 of regeneration, reconstruction of the neural network of DjGAD-immunopositive cells occurred. DjGAD-immunoreactivity was lost in DjGAD-knockdown planarians obtained by RNA interference. The amount of GABA was significantly decreased in DjGAD-knockdown planarians, which lost negative phototaxis but not locomotion activity. These results suggest that DjGAD is clearly required for GABA biosynthesis and photosensitivity in planarians, and expression of DjGAD as detected by anti-DjGAD antibody is a useful marker for GABAergic neurons.

摘要

日本三角涡虫拥有组织相对良好的中枢神经系统,包括脑和腹神经索,并且还具有源自遍布全身间充质空间中的多能干细胞的高再生能力。谷氨酸脱羧酶(GAD)是一种将谷氨酸转化为γ-氨基丁酸(GABA,一种主要的抑制性神经递质)的酶。在本研究中,我们首先在日本三角涡虫中鉴定出一个全长GAD基因(DjGAD,日本三角涡虫谷氨酸脱羧酶)。全组织原位杂交显示少数细胞表达DjGAD mRNA,这些细胞位于头部和咽部区域。为了检测DjGAD蛋白的分布模式,我们制备了一种小鼠抗DjGAD单克隆抗体。DjGAD蛋白的分布模式与DjGAD mRNA的分布模式非常相似。还清晰地观察到了DjGAD免疫阳性细胞的神经网络。此外,我们检测了从尾段再生头部过程中的免疫荧光。在再生第3天,我们可以在前部区域检测到新形成的DjGAD免疫阳性神经元。在再生第5 - 7天,DjGAD免疫阳性细胞的神经网络发生重建。通过RNA干扰获得的DjGAD基因敲低的涡虫中,DjGAD免疫反应性消失。在DjGAD基因敲低的涡虫中,GABA的量显著减少,这些涡虫失去了负趋光性,但运动活性未受影响。这些结果表明,DjGAD对于涡虫中的GABA生物合成和光敏感性显然是必需的,并且通过抗DjGAD抗体检测到的DjGAD表达是GABA能神经元的一个有用标记。

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