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首页> 外文期刊>The European Journal of Neuroscience >Developmental maturation of ionotropic glutamate receptor subunits in rat vestibular nuclear neurons responsive to vertical linear acceleration.
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Developmental maturation of ionotropic glutamate receptor subunits in rat vestibular nuclear neurons responsive to vertical linear acceleration.

机译:离子性谷氨酸受体亚基在大鼠前庭核神经元中对垂直线性加速度的响应的发育成熟。

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We investigated the maturation profile of subunits of ionotropic glutamate receptors in vestibular nuclear neurons that were activated by sinusoidal linear acceleration along the vertical plane. The otolithic origin of Fos expression in these neurons was confirmed as a marker of functional activation when labyrinthectomized and/or stationary control rats contrasted by showing sporadically scattered Fos-labeled neurons in the vestibular nuclei. By double immunohistochemistry for Fos and one of the receptor subunits, otolith-related neurons that expressed either alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionate or N-methyl-d-aspartate subunits were first identified in the medial vestibular nucleus, spinal vestibular nucleus and Group x by postnatal day (P)7, and in the lateral vestibular nucleus and Group y by P9. No double-labeled neurons were found in the superior vestibular nucleus. Within each vestibular subnucleus, these double-labeled neurons constituted approximately 90% of the total Fos-labeled neurons. The percentage of Fos-labeled neurons expressing the GluR1 or NR2A subunit showed developmental invariance in all subnuclei. For Fos-labeled neurons expressing the NR1 subunit, similar invariance was observed except that, in Group y, these neurons decreased from P14 onwards. For Fos-labeled neurons expressing the GluR2, GluR2/3, GluR4 or NR2B subunit, a significant decrease was found by the adult stage. In particular, those expressing the GluR4 subunit showed a two- to threefold decrease in the medial vestibular nucleus, spinal vestibular nucleus and Group y. Also, those expressing the NR2B subunit showed a twofold decrease in Group y. Taken together, the postsynaptic expression of ionotropic glutamate receptor subunits in different vestibular subnuclei suggests that glutamatergic transmission within subregions plays differential developmental roles in the coding of gravity-related vertical spatial information.
机译:我们调查了前庭核神经元中的离子型谷氨酸受体亚基的成熟特征,这些亚基由沿垂直平面的正弦线性加速度激活。当在迷路切除和/或固定对照大鼠中通过在前庭核中散布散布的Fos标记神经元进行对比时,证实这些神经元中Fos表达的耳石起源是功能激活的标志。通过对Fos和其中一个受体亚基的双重免疫组织化学分析,首先在大鼠中鉴定了表达α-氨基-3-羟基-5-羟基-5-甲基-4-异恶唑丙酸或N-甲基-d-天冬氨酸亚基的耳石相关神经元。内侧前庭核,脊椎前庭核和x组在出生后第(P)7天以及外侧前庭核和y组在P9以后。在前庭上核中未发现双标记神经元。在每个前庭亚核内,这些双重标记的神经元约占总Fos标记神经元的90%。表达GluR1或NR2A亚基的Fos标记神经元的百分比在所有亚核中均显示出发育不变性。对于表达NR1亚基的Fos标记神经元,观察到相似的不变性,只是在y组中,这些神经元从P14开始下降。对于表达GluR2,GluR2 / 3,GluR4或NR2B亚基的Fos标记神经元,到成年期发现明显减少。特别地,表达GluR4亚基的那些在内侧前庭核,脊髓前庭核和y族中显示出2-3倍的减少。而且,表达NR2B亚基的那些在y组中显示出两倍的减少。综上所述,离子交换型谷氨酸受体亚单位在不同前庭亚核中的突触后表达表明,子区域内的谷氨酸能传递在重力相关垂直空间信息的编码中起着不同的发育作用。

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