首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Rescue of dorsal root sensory neurons by nerve growth factor and neurotrophin-3, but not brain-derived neurotrophic factor or neurotrophin-4, is dependent on the level of the p75 neurotrophin receptor.
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Rescue of dorsal root sensory neurons by nerve growth factor and neurotrophin-3, but not brain-derived neurotrophic factor or neurotrophin-4, is dependent on the level of the p75 neurotrophin receptor.

机译:通过神经生长因子和Neurotrophin-3(而非脑源性神经营养因子或Neurotrophin-4)对背根感觉神经元的拯救取决于p75神经营养素受体的水平。

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Sensory neurons isolated from dorsal root ganglia of postnatal mice were analysed for cell surface p75, using fluorescent antibody staining with flow cytometry. They were found to follow a single bell-shaped distribution of p75 level, with no discrete group of p75-negative neurons. Sensory neurons were then separated by fluorescence-activated cell sorting into high- and low-p75 populations, consisting of cells within the highest and lowest 15th percentiles, respectively, of p75 expression levels. The sorted neurons were tested for trkA staining. All high-p75 neurons were positive for trkA, while many low-p75 cells were negative for trkA. The sorted neurons were placed in culture, and their survival in the absence and presence of various neurotrophins was measured. Low-p75 cells were found to have enhanced survival in the absence of neurotrophins, while cells with high p75 levels had reduced survival, compared to the overall population. Almost all high-p75 neurons were rescued with nerve growth factor, whereas less than half of the low-p75 cells were rescued. The slope of the dose response to nerve growth factor did not differ markedly between high- and low-p75 cells. High-p75, but not low-p75, neurons were responsive to neurotrophin-3. There was only a small response to either brain-derived neurotrophic factor or neurotrophin-4 in both high- and low-p75 neurons. All low-p75 neurons, and 68% of high-p75 neurons, survived in the presence of ciliary neurotrophic factor. These results, while consistent with our hypothesis that p75 may act as a death factor in postnatal sensory neurons, also imply a role for p75 in the modulation of trk responsiveness to neurotrophins. They also indicate overlapping neurotrophin responses in sensory neurons, especially in those with high p75 levels. A large proportion of low-p75 cells were not responsive to any of the nerve growth factor-related neurotrophins, suggesting an important role for cytokines such as ciliary neurotrophic factor and leukaemia inhibitor factor in the survival of sensory neurons.
机译:使用流式细胞仪进行荧光抗体染色,分析了从出生后小鼠背根神经节分离出的感觉神经元的细胞表面p75。发现它们遵循p75水平的单一钟形分布,没有离散的p75阴性神经元组。然后通过荧光激活细胞分选将感觉神经元分离为高和低p75群体,分别由p75表达水平最高和最低的15个百分位内的细胞组成。测试分类的神经元的trkA染色。所有高p75神经元的trkA阳性,而许多低p75细胞的trkA阴性。将分类的神经元放置在培养物中,并测量在不存在和存在各种神经营养蛋白的情况下它们的存活率。与总群体相比,发现在缺乏神经营养蛋白的情况下,低p75细胞具有增强的生存能力,而高p75水平的细胞则具有降低的生存能力。几乎所有的高p75神经元都被神经生长因子拯救,而少于一半的低p75细胞被拯救。高和低p75细胞之间对神经生长因子的剂量反应斜率没有显着差异。高p75,但不是低p75的神经元对Neurotrophin-3有反应。在高和低p75神经元中,对脑源性神经营养因子或Neurotrophin-4的反应很小。所有低p75神经元和高p75神经元的68%在睫状神经营养因子存在下存活。这些结果与我们的假设(p75可能是出生后的感觉神经元的死亡因子)相一致,同时也暗示了p75在调节trk对神经营养蛋白的反应性中的作用。它们还表明感觉神经元中的神经营养蛋白反应重叠,尤其是在p75水平高的神经元中。大部分低p75细胞对任何与神经生长因子相关的神经营养蛋白均无反应,这表明诸如睫状神经营养因子和白血病抑制因子等细胞因子在感觉神经元的存活中具有重要作用。

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