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Effects of 5-aza-2’-deoxycytidine on the Gene ExpressionProfile During Embryogenesis of the AscidianCiona intestinalis: A Microarray Analysis

机译:5-氮杂-2′-脱氧胞苷对小孢子虫胚胎发生过程中基因表达谱的影响:芯片分析

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摘要

DNA methylation is an important epigenetic factor that participates in silencing genes. Genomic approaches to studying DNA methylation promise to be particularly fruitful, since DNA methylation is involved in global control of gene expression in many organisms. With its draft genome completed and a large quantity of available cDNA data, Ciona intestinalis is newly emerging as an invaluable model organism for investigating genome-wide gene expression and function. Here we examine the effects of 5-aza-2’-deoxycytidine (5-aza-CdR), a chemical that blocks CpG methylation, on the gene expression profile of early C. intestinalis embryos, using oligonucleotide-based microarray analysis. Embryos treated with 5-aza-CdR show delayed gastrulation and are developmentally arrested at the neurula stage. They subsequently lose cellular adhesion and finally die. Apoptosis was not detected in these embryos by TUNEL staining at 12 h, indicating that the defects observed did not result from 5-aza-CdR-induced apoptosis. Gene expression profiles of 12-h-old 5-aza-CdR-treated embryos compared to wild-type revealed 91 upregulated genes and 168 downregulated genes. Although nearly half of these encoded proteins with unknown functions, several encoded cell-signaling molecules and transcription factors. In addition, genes associated with the stress response and cell defense were upregulated, whereas genes involved in cell adhesion were downregulated.
机译:DNA甲基化是参与沉默基因的重要表观遗传因子。研究DNA甲基化的基因组方法有望取得丰硕的成果,因为DNA甲基化涉及许多生物体对基因表达的整体控制。完整的基因组草图和大量可用的cDNA数据,Ciona intestinalis逐渐成为研究全基因组基因表达和功能的宝贵模型生物。在这里,我们使用基于寡核苷酸的微阵列分析技术,研究了一种可阻断CpG甲基化的化学物质5-氮杂2'-脱氧胞苷(5-氮杂-CdR)对早期肠弯曲杆菌胚胎基因表达谱的影响。用5-氮杂-CdR处理的胚胎显示出延迟的胃形成,并在神经元阶段发育停滞。他们随后失去细胞粘附并最终死亡。在12 h时未通过TUNEL染色在这些胚胎中检测到凋亡,这表明观察到的缺陷并非由5-氮杂-CdR诱导的细胞凋亡引起。与野生型相比,经12 h龄5 aza-CdR处理的胚胎的基因表达谱显示91个上调的基因和168个下调的基因。尽管这些编码蛋白中近一半具有未知功能,但仍有几种编码细胞信号分子和转录因子。另外,与应激反应和细胞防御相关的基因被上调,而与细胞粘附有关的基因被下调。

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  • 作者

    Sasaki Akane; Satoh Nori;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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