首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Ultrastructural localization of connexins (Cx36, Cx43, Cx45), glutamate receptors and aquaporin-4 in rodent olfactory mucosa, olfactory nerve and olfactory bulb.
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Ultrastructural localization of connexins (Cx36, Cx43, Cx45), glutamate receptors and aquaporin-4 in rodent olfactory mucosa, olfactory nerve and olfactory bulb.

机译:连接蛋白(Cx36,Cx43,Cx45),谷氨酸受体和aquaporin-4在啮齿动物嗅觉粘膜,嗅觉神经和嗅球中的超微结构定位。

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摘要

Odorant/receptor binding and initial olfactory information processing occurs in olfactory receptor neurons (ORNs) within the olfactory epithelium. Subsequent information coding involves high-frequency spike synchronization of paired mitral/tufted cell dendrites within olfactory bulb (OB) glomeruli via positive feedback between glutamate receptors and closely-associated gap junctions. With mRNA for connexins Cx36, Cx43 and Cx45 detected within ORN somata and Cx36 and Cx43 proteins reported in ORN somata and axons, abundant gap junctions were proposed to couple ORNs. We used freeze-fracture replica immunogold labeling (FRIL) and confocal immunofluorescence microscopy to examine Cx36, Cx43 and Cx45 protein in gap junctions in olfactory mucosa, olfactory nerve and OB in adult rats and mice and early postnatal rats. In olfactory mucosa, Cx43 was detected in gap junctions between virtually all intrinsic cell types except ORNs and basal cells; whereas Cx45 was restricted to gap junctions in sustentacular cells. ORN axons contained neither gap junctions nor any of the three connexins. In OB, Cx43 was detected in homologous gap junctions between almost all cell types except neurons and oligodendrocytes. Cx36 and, less abundantly, Cx45 were present in neuronal gap junctions, primarily at "mixed" glutamatergic/electrical synapses between presumptive mitral/tufted cell dendrites. Genomic analysis revealed multiple miRNA (micro interfering RNA) binding sequences in 3'-untranslated regions of Cx36, Cx43 and Cx45 genes, consistent with cell-type-specific post-transcriptional regulation of connexin synthesis. Our data confirm absence of gap junctions between ORNs, and support Cx36- and Cx45-containing gap junctions at glutamatergic mixed synapses between mitral/tufted cells as contributing to higher-order information coding within OB glomeruli.
机译:气味/受体结合和最初的嗅觉信息处理发生在嗅觉上皮细胞内的嗅觉受体神经元(ORN)中。随后的信息编码涉及嗅球(OB)肾小球内成对的二尖瓣/簇状细胞树突的高频尖峰同步,该过程通过谷氨酸受体和紧密相关的间隙连接之间的正反馈来实现。通过在ORN体细胞中检测到连接蛋白Cx36,Cx43和Cx45的mRNA,以及在ORN体细胞和轴突中报告的Cx36和Cx43蛋白,提出了丰富的缺口连接来偶联ORN。我们使用冷冻断裂复制免疫金标记(FRIL)和共聚焦免疫荧光显微镜检查了成年大鼠和小鼠以及产后早期大鼠的嗅粘膜,嗅神经和OB间隙连接中的Cx36,Cx43和Cx45蛋白。在嗅觉粘膜中,除ORN和基底细胞外,几乎所有内在细胞类型之间的间隙连接处均检测到Cx43。而Cx45仅限于南半球细胞的间隙连接。 ORN轴突既不包含间隙连接,也不包含三种连接蛋白。在OB中,几乎在除神经元和少突胶质细胞以外的所有细胞类型之间的同源间隙连接中检测到Cx43。 Cx36和Cx45较少存在于神经元间隙连接处,主要存在于推测的二尖瓣/簇状细胞树突之间的“混合”谷氨酸能/电突触处。基因组分析揭示了Cx36,Cx43和Cx45基因3'-非翻译区中的多个miRNA(微干扰RNA)结合序列,与连接蛋白合成的细胞类型特异性转录后调控一致。我们的数据证实了ORN之间没有间隙连接,并且在二尖瓣/簇状细胞之间的谷氨酸能混合突触中支持Cx36和Cx45的间隙连接,这有助于OB肾小球内的高阶信息编码。

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