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Kir3.3的轴突分选确定了啮齿动物海马体CA3区中一个含γ-氨基丁酸的神经元。

Axonal sorting of Kir3.3 defines a GABA-containing neuron in the CA3 region of rodent hippocampus.

作者信息

Grosse Gisela, Eulitz Dirk, Thiele Theodor, Pahner Ingrid, Schröter Sascha, Takamori Shigeo, Grosse Johannes, Wickman Kevin, Tapp Rosemarie, Veh Rüdiger W, Ottersen Ole Petter, Ahnert-Hilger Gudrun

机构信息

Institut für Anatomie der Charité, Humboldt-Universität zu Berlin, Schumannstrasse 20/21, 10117 Berlin, Germany.

出版信息

Mol Cell Neurosci. 2003 Nov;24(3):709-24. doi: 10.1016/s1044-7431(03)00234-3.

Abstract

Hippocampal interneurons comprise a heterogeneous group of locally acting GABAergic neurons. In addition to their variability in cotransmitter content and receptor profile, they express a variety of potassium channels that specify their individual properties. Here we describe a new type of large GABA-containing neuron in rodent hippocampus that is characterized by an axonal sorting of the potassium channel Kir3.3. The parent cell bodies of the Kir3.3-positive axons are located in CA3, as assessed by primary cultures derived from hippocampal subareas. At postnatal day 14 these neurons appear at the border between stratum oriens and stratum pyramidale of CA3, from where their axons pass through stratum pyramidale to join the mossy fiber tract. In adult hippocampus, high levels of Kir3.3 channel protein exist in axons that run with the mossy fiber tract. Kir3.3 and the vesicular GABA transporter could be identified in subpopulations of large synaptic terminals that probably derive from Kir3.3 neurons. Axonal sorting of Kir3.3 appears to be typical of a group of large inhibitory neurons, including Purkinje cells and a novel type of interneuron in CA3. Kir3.3 neurons might modulate the activity of CA3 circuitries and consequently memory processing in the hippocampus.

摘要

海马体中间神经元由一组异质性的局部起作用的γ-氨基丁酸能神经元组成。除了其在共递质含量和受体分布方面的变异性外,它们还表达多种决定其个体特性的钾通道。在这里,我们描述了一种啮齿动物海马体中新型的含γ-氨基丁酸的大神经元,其特征是钾通道Kir3.3在轴突上的分选。通过源自海马体亚区的原代培养物评估,Kir3.3阳性轴突的母细胞体位于CA3区。在出生后第14天,这些神经元出现在CA3区的海马下托层和锥体层之间的边界处,它们的轴突从这里穿过锥体层,加入苔藓纤维束。在成年海马体中,与苔藓纤维束一起运行的轴突中存在高水平的Kir3.3通道蛋白。在可能源自Kir3.3神经元的大突触终末亚群中可以鉴定出Kir3.3和囊泡γ-氨基丁酸转运体。Kir3.3在轴突上的分选似乎是一组大抑制性神经元的典型特征,包括浦肯野细胞和CA3区一种新型的中间神经元。Kir3.3神经元可能调节CA3回路的活动,进而调节海马体中的记忆处理。

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