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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >An orchestrated gene expression component of neuronal programmed cell death revealed by cDNA array analysis
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An orchestrated gene expression component of neuronal programmed cell death revealed by cDNA array analysis

机译:cDNA阵列分析揭示神经元程序性细胞死亡的精心策划的基因表达成分

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摘要

Programmed cell death (PCD) during neuronal development and disease has been shown to require de novo RNA synthesis. How- ever, the time course and regulation of target genes is poorly understood. By using a brain-biased array of over 7,500 cDNAs, we profiled this gene expression component of PCD in cerebellar granule neurons challenged separately by potassium withdrawal. combined potassium and serum withdrawal, and kainic acid ad- ministration. We found that hundreds of genes were significantly regulated in discreet waves including known genes whose protein products are involved in PCD. A restricted set of genes was regulated by all models, providing evidence that signals inducing PCD can regulate large assemblages of genes (of which a restricted subset may be shared in multiple pathways).
机译:已显示在神经元发育和疾病期间的程序性细胞死亡(PCD)需要从头进行RNA合成。但是,人们对靶基因的时间进程和调控知之甚少。通过使用超过7,500个cDNA的大脑偏向阵列,我们在钾提取分别挑战的小脑颗粒神经元中分析了PCD的这种基因表达成分。合并钾和血清戒断,以及海藻酸管理。我们发现在离散波中数百种基因受到了显着调节,包括蛋白质产物与PCD有关的已知基因。所有模型都对一组受限的基因进行了调节,从而提供了证据,表明诱导PCD的信号可以调节大量的基因组合(其中受限的子集可能在多种途径中共享)。

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