首页> 美国卫生研究院文献>The Journal of Neuroscience >Analysis of the Mechanism of Loss of Trophic Factor Dependence Associated with Neuronal Maturation: A Phenotype Indistinguishable fromBax Deletion
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Analysis of the Mechanism of Loss of Trophic Factor Dependence Associated with Neuronal Maturation: A Phenotype Indistinguishable fromBax Deletion

机译:与神经元成熟相关的营养因子依赖性丧失的机制的分析:表型与Bax删除无法区分。

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摘要

During development, sympathetic neurons are critically dependent on nerve growth factor (NGF) for survival. Neurons isolated from the superior cervical ganglia (SCG) of embryonic rodents and maintained for 1 week in vitro undergo programmed cell death in response to NGF deprivation. As the cells mature in vitro and in vivo, however, these neurons develop a resistance to NGF deprivation and become much less acutely dependent on NGF for survival. Using an in vitro model of neuronal maturation, we confirmed that SCG neurons maintained in culture for 3–4 weeks did not experience a dramatic loss in viability after NGF removal, yet they did undergo the initial biochemical and genetic changes elicited by NGF deprivation of young neurons. NGF deprivation of mature neurons produced rapid decreases in glucose uptake and protein and RNA synthesis rates, increased phosphorylation of c-Jun, and an increase in c-jun mRNA. Mature neurons, however, experienced a block in the cell death program before the final stages of the pathway activated in young neurons, which includes the induction of c-fos mRNA and characteristic apoptotic nuclear changes. This maturation-induced block was indistinguishable by these criteria from the block produced by Baxdeficiency. Expression of Bax in mature neurons restored the apoptotic pathway, such that after NGF removal,Bax-overexpressing mature neurons resumed the apoptotic program, including the induction of c-Fos and passage through a caspase checkpoint. Thus, a block in the apoptotic program at or near the BAX checkpoint accounts for the decreased dependence of mature neurons on neurotrophic factor to maintain survival.
机译:在发育过程中,交感神经元的生存关键取决于神经生长因子(NGF)。从胚胎啮齿动物的上颈神经节(SCG)分离并在体外维持1周的神经元会响应NGF剥夺而经历程序性细胞死亡。但是,随着细胞在体外和体内的成熟,这些神经元会产生对NGF剥夺的抗性,并且对生存的急性依赖性大大降低。使用神经元成熟的体外模型,我们确认了在培养物中维持3至4周的SCG神经元在NGF去除后并没有经历活力的急剧下降,但是它们确实经历了NGF剥夺幼年引起的初始生化和遗传变化。神经元。 NGF剥夺成熟神经元后,葡萄糖摄取,蛋白质和RNA合成速率迅速降低,c-Jun磷酸化增加,而c-jun mRNA增加。然而,成熟的神经元在年轻神经元激活的途径的最后阶段之前经历了细胞死亡程序的阻滞,这包括c-fos mRNA的诱导和特征性凋亡核变化。根据这些标准,这种成熟诱导的阻滞与Bax缺乏症产生的阻滞没有区别。 Bax在成熟神经元中的表达恢复了凋亡途径,从而在去除NGF后,过表达Bax的成熟神经元恢复了凋亡程序,包括c-Fos的诱导和通过半胱天冬酶检查点的传递。因此,BAX检查点处或附近的凋亡程序中的障碍说明了成熟神经元对神经营养因子维持生存的依赖性降低。

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