首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Olfactory epithelia differentially express neuronal markers.
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Olfactory epithelia differentially express neuronal markers.

机译:嗅觉上皮细胞差异表达神经元标志物。

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All three olfactory epithelia, the olfactory epithelium proper (OE), the septal organ of Masera (SO), and the vomeronasal organ of Jacobson (VNO) originate from the olfactory placode. Here, their diverse neurochemical phenotypes were analyzed using the immunohistochemical expression pattern of different neuronal markers. The olfactory bulb (OB) served as neuronal control. Neuronal Nuclei Marker (NeuN) is neither expressed in sensory neurons in any of the three olfactory epithelia, nor in relay neurons (mitral/tufted cells) of the OB. However, OB interneurons (periglomerular/granule cells) labeled, as did supranuclear structures of VNO supporting cells and VNO glands. Protein Gene Product 9.5 (PGP9.5 = C-terminal ubiquitin hydrolase L1 = UCHL1) expression is exactly the opposite: all olfactory sensory neurons express PGP9.5 as do OB mitral/tufted cells but not interneurons. Neuron Specific Enolase (NSE) expression is highest in the most apically located OE and SO sensory neurons and patchy in VNO. In contrast, the cytoplasm of the most basally located neurons of OE and SO immunoreacted for Growth Associated Protein 43 (GAP-43/B50). In VNO neurons GAP-43 labeling is also nuclear. In the cytoplasm, Olfactory Marker Protein (OMP) is most intensely expressed in SO, followed by OE and least in VNO neurons; further, OMP is also expressed in the nucleus of basally located VNO neurons. OB mitral/tufted cells express OMP at low levels. Neurons closer to respiratory epithelium often expressed a higher level of neuronal markers, suggesting a role of those markers for neuronal protection against take-over. Within the VNO the neurons show clear apical-basal expression diversity, as they do for factors of the signal transduction cascade. Overall, expression patterns of the investigated neuronal markers suggest that OE and SO are more similar to each other than to VNO.
机译:所有三个嗅觉上皮细胞,固有嗅觉上皮(OE),Masera的中隔器官(SO)和雅各布森的犁鼻器器官(VNO)都来自嗅觉斑块。在这里,使用不同神经元标记物的免疫组织化学表达模式分析了它们不同的神经化学表型。嗅球(OB)用作神经元控制。神经元核标记(NeuN)在OB的三个嗅觉上皮细胞的任何一个中都没有在感觉神经元中表达,也没有在OB的中继神经元(有丝分裂/簇状细胞)中表达。但是,OB interneurons(肾小球/颗粒细胞)标记,VNO支持细胞和VNO腺的核上结构也是如此。蛋白质基因产物9.5(PGP9.5 = C端泛素水解酶L1 = UCHL1)的表达正好相反:所有嗅觉感觉神经元都像OB二尖瓣/簇状细胞一样表达PGP9.5,但不表达中间神经元。神经元特异性烯醇化酶(NSE)的表达在最顶端的OE和SO感觉神经元中最高,而在VNO中则斑片状。相反,最基础的OE和SO神经元的细胞质对生长相关蛋白43(GAP-43 / B50)发生免疫反应。在VNO神经元中,GAP-43标记也是核的。在细胞质中,嗅觉标记蛋白(OMP)在SO中表达最强,其次是OE,在VNO神经元中表达最少;此外,OMP也表达在基础定位的VNO神经元的细胞核中。 OB二尖瓣/簇状细胞低水平表达OMP。靠近呼吸道上皮的神经元通常表达较高水平的神经元标志物,表明这些标志物在防止神经元接管中发挥了作用。在VNO内,神经元显示出明显的根尖基底表达多样性,就像它们对信号转导级联因子的作用一样。总体而言,所研究的神经元标记物的表达模式表明OE和SO彼此之间的相似性高于VNO。

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