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Tag1缺陷通过二尖瓣细胞迁移受损导致嗅觉功能障碍。

Tag1 deficiency results in olfactory dysfunction through impaired migration of mitral cells.

作者信息

Bastakis George G, Savvaki Maria, Stamatakis Antonis, Vidaki Marina, Karagogeos Domna

机构信息

Department of Basic Science, Faculty of Medicine, University of Crete and Institute of Molecular Biology and Biotechnology-FoRTH, Vassilika Vouton, Heraklion, Crete 71110, Greece.

Department of Basic Science, Faculty of Medicine, University of Crete and Institute of Molecular Biology and Biotechnology-FoRTH, Vassilika Vouton, Heraklion, Crete 71110, Greece

出版信息

Development. 2015 Dec 15;142(24):4318-28. doi: 10.1242/dev.123943. Epub 2015 Nov 2.

Abstract

The olfactory system provides mammals with the abilities to investigate, communicate and interact with their environment. These functions are achieved through a finely organized circuit starting from the nasal cavity, passing through the olfactory bulb and ending in various cortical areas. We show that the absence of transient axonal glycoprotein-1 (Tag1)/contactin-2 (Cntn2) in mice results in a significant and selective defect in the number of the main projection neurons in the olfactory bulb, namely the mitral cells. A subpopulation of these projection neurons is reduced in Tag1-deficient mice as a result of impaired migration. We demonstrate that the detected alterations in the number of mitral cells are well correlated with diminished odor discrimination ability and social long-term memory formation. Reduced neuronal activation in the olfactory bulb and the corresponding olfactory cortex suggest that Tag1 is crucial for the olfactory circuit formation in mice. Our results underpin the significance of a numerical defect in the mitral cell layer in the processing and integration of odorant information and subsequently in animal behavior.

摘要

嗅觉系统使哺乳动物具备探索、交流以及与环境互动的能力。这些功能通过一个组织精细的回路来实现,该回路始于鼻腔,经过嗅球,最终止于各个皮质区域。我们发现,小鼠中缺乏瞬时轴突糖蛋白-1(Tag1)/接触蛋白-2(Cntn2)会导致嗅球中主要投射神经元(即二尖瓣细胞)数量出现显著且选择性的缺陷。由于迁移受损,这些投射神经元的一个亚群在Tag1缺陷小鼠中减少。我们证明,检测到的二尖瓣细胞数量改变与气味辨别能力和社交长期记忆形成的减弱密切相关。嗅球和相应的嗅觉皮质中神经元激活的减少表明,Tag1对小鼠嗅觉回路的形成至关重要。我们的研究结果强调了二尖瓣细胞层数量缺陷在气味信息处理和整合以及随后动物行为中的重要性。

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