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Gene amplification during differentiation of mammalian neural stem cells in vitro and in vivo

机译:体内外哺乳动物神经干细胞分化过程中的基因扩增

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摘要

In development of amphibians and flies, gene amplification is one of mechanisms to increase gene expression. In mammalian cells, gene amplification seems to be restricted to tumorigenesis and acquiring of drug-resistance in cancer cells. Here, we report a complex gene amplification pattern in mouse neural progenitor cells during differentiation with approximately 10% of the genome involved. Half of the amplified mouse chromosome regions overlap with amplified regions previously reported in human neural progenitor cells, indicating conserved mechanisms during differentiation. Using fluorescence in situ hybridization, we verified the amplification in single cells of primary mouse mesencephalon E14 (embryonic stage) neurosphere cells during differentiation. In vivo we confirmed gene amplifications of the TRP53 gene in cryosections from mouse embryos at stage E11.5. Gene amplification is not only a cancer-related mechanism but is also conserved in evolution, occurring during differentiation of mammalian neural stem cells
机译:在两栖动物和果蝇的发育中,基因扩增是增加基因表达的机制之一。在哺乳动物细胞中,基因扩增似乎仅限于肿瘤发生和癌细胞中耐药性的获得。在这里,我们报告小鼠神经祖细胞分化过程中复杂的基因扩增模式,涉及大约10%的基因组。一半的扩增小鼠染色体区域与人类神经祖细胞先前报道的扩增区域重叠,表明分化过程中的保守机制。使用荧光原位杂交,我们验证了分化过程中原代小鼠中脑E14(胚胎期)神经球细胞在单细胞中的扩增。在体内,我们在阶段E11.5的小鼠胚胎冰冻切片中证实了TRP53基因的基因扩增。基因扩增不仅是与癌症相关的机制,而且在进化过程中也是保守的,发生在哺乳动物神经干细胞分化过程中

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