Reuss Stefan, Wystub Sylvia, Disque-Kaiser Ursula, Hankeln Thomas, Burmester Thorsten
Department of Nuclear Medicine, University Medical Center, Johannes Gutenberg-University Mainz, Germany.
Institute of Molecular Genetics, Johannes Gutenberg-University Mainz, Germany.
Front Neuroanat. 2016 Apr 27;10:47. doi: 10.3389/fnana.2016.00047. eCollection 2016.
Cytoglobin (Cygb) is a vertebrate globin with so far poorly defined function. It is expressed in the fibroblast cell-lineage but has also been found in neurons. Here we provide, using immunohistochemistry, a detailed study on the distribution of Cygb in the mouse brain. While Cygb is a cytoplasmic protein in active cells of the supportive tissue, in neurons it is located in the cytoplasm and the nucleus. We found the expression of Cygb in all brain regions, although only a fraction of the neurons was Cygb-positive. Signals were of different intensity ranging from faint to very intense. Telencephalic neurons in all laminae of the cerebral cortex (CCo), in the olfactory bulb (in particular periglomerular cells), in the hippocampal formation (strongly stained pyramidal cells with long processes), basal ganglia (scattered multipolar neurons in the dorsal striatum, dorsal and ventral pallidum (VP)), and in the amygdala (neurons with unlabeled processes) were labeled by the antibody. In the diencephalon, we observed Cygb-positive neurons of moderate intensity in various nuclei of the dorsal thalamus, in the hypothalamus, metathalamus (geniculate nuclei), epithalamus with strong labeling of habenular nucleus neurons and no labeling of pineal cells, and in the ventral thalamus. Tegmental neurons stood out by strongly stained somata with long processes in, e.g., the laterodorsal nucleus. In the tectum, faintly labeled neurons and fibers were detected in the superior colliculus (SC). The cerebellum exhibited unlabeled Purkinje-neurons but signs of strong afferent cortical innervation. Neurons in the gray matter of the spinal cord showed moderate immunofluorescence. Peripheral ganglia were not labeled by the antibody. The Meynert-fascicle and the olfactory and optic nerves/tracts were the only Cygb-immunoreactive (Cygb-IR) fiber systems. Notably, we found a remarkable level of colocalization of Cygb and neuronal nitric oxide (NO)-synthase in neurons, which supports a functional association.
细胞红蛋白(Cygb)是一种脊椎动物球蛋白,其功能迄今尚未明确。它在成纤维细胞谱系中表达,但也在神经元中被发现。在此,我们运用免疫组织化学方法,对Cygb在小鼠大脑中的分布进行了详细研究。虽然Cygb在支持组织的活跃细胞中是一种细胞质蛋白,但在神经元中它位于细胞质和细胞核中。我们发现Cygb在所有脑区均有表达,尽管只有一小部分神经元是Cygb阳性。信号强度各异,从微弱到非常强烈。大脑皮层(CCo)各层、嗅球(特别是球周细胞)、海马结构(长突起的强染色锥体细胞)、基底神经节(背侧纹状体、背侧和腹侧苍白球(VP)中散在的多极神经元)以及杏仁核(突起未标记的神经元)中的端脑神经元被该抗体标记。在间脑,我们观察到背侧丘脑、下丘脑、后丘脑(膝状体核)、上丘脑(缰核神经元强染色,松果体细胞无染色)以及腹侧丘脑的各个核团中有中等强度的Cygb阳性神经元。例如,被盖神经元在外侧背核中以长突起的强染色胞体而突出。在顶盖,上丘(SC)中检测到微弱标记的神经元和纤维。小脑显示浦肯野神经元未被标记,但有强烈传入皮质神经支配的迹象。脊髓灰质中的神经元显示中等免疫荧光。外周神经节未被该抗体标记。迈内特束以及嗅神经和视神经/视束是仅有的Cygb免疫反应性(Cygb-IR)纤维系统。值得注意的是,我们发现神经元中Cygb与神经元型一氧化氮(NO)合酶存在显著的共定位,这支持了一种功能关联。