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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Neuroblastoma epigenetics: From candidate gene approaches to genome-wide screenings
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Neuroblastoma epigenetics: From candidate gene approaches to genome-wide screenings

机译:神经母细胞瘤表观遗传学:从候选基因方法到全基因组筛选

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摘要

Neuroblastoma (NB) is a childhood tumor originating from sympathetic nervous system cells. Although recently new insights into genes involved in NB have emerged, the molecular basis of neuroblastoma development and progression still remains poorly understood. The best-characterized genetic alterations include amplification of the proto-oncogene MYCN, ALK activating mutations or amplification, gain of chromosome arm 17q and losses of 1p, 3p and 11q. Epigenetic alterations have been described as well: caspase-8 (CASP8) and RAS-association domain family 1 isoform A (RASSF1A) DNAmethylation are important events for the development and progression of neuroblastoma. In total, about 75 genes are described as epigenetically affected in NB cell lines and/or NB primary samples. These epigenetic alterations were either found using a candidate gene approach or based on the analysis of genome-wide screening techniques. This review gives an extensive overview of all epigenetic changes described in NB as of today, with a main focus on both prognostic use and the potential of genome-wide techniques to find epigenetic prognostic biomarkers in NB. We summarize the key findings so far and the state-of-the-art of the upcoming methods at a unique time frame in the transition towards combined genome-wide chromatin immunoprecipitation (ChIP) and DNA sequencing techniques.
机译:神经母细胞瘤(NB)是起源于交感神经系统细胞的儿童期肿瘤。尽管最近对与NB有关的基因有了新的见解,但神经母细胞瘤发生和发展的分子基础仍然知之甚少。最典型的遗传改变包括原癌基因MYCN的扩增,ALK激活突变或扩增,染色体臂17q的获得和1p,3p和11q的丧失。还描述了表观遗传学改变:caspase-8(CASP8)和RAS关联域家族1亚型A(RASSF1A)DNA甲基化对于神经母细胞瘤的发生和发展是重要的事件。总共约有75个基因被描述为在NB细胞系和/或NB原代样品中受到表观遗传学影响。这些表观遗传改变是使用候选基因方法或基于全基因组筛选技术的分析发现的。这篇综述提供了迄今为止NB中描述的所有表观遗传学变化的广泛概述,主要侧重于预后用途和全基因组技术在NB中发现表观遗传学预后生物标志物的潜力。我们总结了迄今为止的主要发现,以及在向全基因组染色质免疫沉淀(ChIP)和DNA测序技术相结合的过渡中,在独特的时间框架内即将到来的方法的最新技术。

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