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首页> 外文期刊>Brain structure & function >Vesicular glutamate transporter 1 (VGLUT1)- and VGLUT2-immunopositive axon terminals on the rat jaw-closing and jaw-opening motoneurons
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Vesicular glutamate transporter 1 (VGLUT1)- and VGLUT2-immunopositive axon terminals on the rat jaw-closing and jaw-opening motoneurons

机译:在大鼠钳口闭合和钳口开口运动神经元上的凹凸谷氨酸转运蛋白1(Vglut1) - 和Vglut2-免疫轴线端子

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To provide information on the glutamatergic synapses on the trigeminal motoneurons, which may be important for understanding the mechanism of control of jaw movements, we investigated the distribution of vesicular glutamate transporter (VGLUT)1-immunopositive (+) and VGLUT2?+?axon terminals (boutons) on the rat jaw-closing (JC) and jaw-opening (JO) motoneurons, and their morphological determinants of synaptic strength by retrograde tracing, electron microscopic immunohistochemistry, and quantitative ultrastructural analysis. We found that (1) the large majority of VGLUT?+?boutons on JC and JO motoneurons were VGLUT2+, (2) the density of VGLUT1?+?boutons terminating on JC motoneurons was significantly higher than that on JO motoneurons, (3) the density of VGLUT1?+?boutons terminating on non-primary dendrites of JC motoneurons was significantly higher than that on somata or primary dendrites, whereas the density of VGLUT2?+?boutons was not significantly different between JC and JO motoneurons and among various compartments of the postsynaptic neurons, and (4) the bouton volume, mitochondrial volume, and active zone area of the VGLUT1?+?boutons forming synapses on JC motoneurons were significantly bigger than those of VGLUT2?+?boutons. These findings suggest that JC and JO motoneurons receive glutamatergic input primarily from VGLUT2-expressing intrinsic neurons (premotoneurons), and may be controlled differently by neurons in the trigeminal mesencephalic nucleus and by glutamatergic premotoneurons.
机译:提供有关三叉子运动神经元上的谷氨酰胺突触的信息,这对于了解颌动的控制机制可能是重要的,我们调查了囊泡谷氨酸转运蛋白(Vglut)1-Immun阳性(+)和Vglut2?+轴承座的分布(Boutons)在大鼠钳口(JC)和钳口开口(jo)运动神经元,以及逆行描绘,电子显微镜免疫组化和定量超微结构分析的突触强度的形态学决定因素。我们发现(1)大多数Vglut?+?JC和Jo Motoneurons上的Butons是Vglut2 +,(2)VGlut1的密度1?+?终止于JC Motoneurons的Boutons显着高于Jo Motoneurons(3) Vglut1?+的密度终止于JC Motoneuron的非原代树枝状的末端显着高于Somata或初级树枝状体上的末端,而VGlut2的密度在JC和Jo Motoneurons和各个隔间之间没有显着差异。在突触后神经元和(4)BGlut1?+的Buton体积,线粒体体积和有源区面积,JC运动神经元的突触比VGLut2 + BGLut2的突触明显大。这些发现表明,JC和JO Motoneurons主要来自谷族体外输入,其主要来自VGLut2表达的内在神经元(首臼骨),并且可以通过三叉内心核细胞核中的神经元和由谷氨酸糖尿内先兆子尿中的神经元不同地控制。

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