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首页> 外文期刊>Cancer prevention research. >Targeted DNA Methylation Screen in the Mouse Mammary Genome Reveals a Parity-Induced Hypermethylation of Igf1r That Persists Long after Parturition
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Targeted DNA Methylation Screen in the Mouse Mammary Genome Reveals a Parity-Induced Hypermethylation of Igf1r That Persists Long after Parturition

机译:小鼠乳腺基因组中的靶向DNA甲基化筛网显示出在分娩后持续存在的IGF1R的平等诱导的高甲基化

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摘要

The most effective natural prevention against breast cancer is an early first full-term pregnancy. Understanding how the protective effect is elicited will inform the development of new prevention strategies. To better understand the role of epigenetics in long-term protection, we investigated parity-induced DNA methylation in the mammary gland. FVB mice were bred or remained nulliparous and mammary glands harvested immediately after involution (early) or 6.5 months following involution (late), allowing identification of both transient and persistent changes. Targeted DNA methylation (109 Mb of Ensemble regulatory features) analysis was performed using the Sure Select XT Mouse Methyl-seq assay and massively parallel sequencing. Two hundred sixty-nine genes were hyper-methylated and 128 hypomethylated persistently at both the early and late time points. Pathway analysis of the persistently differentially methylated genes revealed Igf1r to be central to one of the top identified signaling networks, and Igf1r itself was one of the most significantly hypermethylated genes. Hypermethylation of Igf1r in the parous mammary gland was associated with a reduction of Igf1r mRNA expression. These data suggest that the IGF pathway is regulated at multiple levels during pregnancy and that its modification might be critical in the protective role of pregnancy. This supports the approach of lowering IGF action for prevention of breast cancer, a concept that is currently being tested clinically. (C) 2015 AACR.
机译:对乳腺癌最有效的自然预防是一个早期的首次怀孕。了解如何引发保护效果将以新的预防策略的发展提供信息。为了更好地了解表观遗传学在长期保护中的作用,我们研究了乳腺中的奇偶诊断诱导的DNA甲基化。在参与(早期)或6.5个月后,FVB小鼠繁殖或留下的含无乳腺,尿液(早期)或6.5个月,允许鉴定瞬态和持续变化。使用当肯定选择XT小鼠甲基-SEQ测定和大规模平行测序进行靶向DNA甲基化(109MB的合奏调节特征)分析。在早期和晚期时间点,两百六十九个基因持续存在于过甲基化且持续128个黄甲基化。持续差异甲基化基因的途径分析显示IGF1R是顶部鉴定的信号网络之一的中心,IGF1R本身是最显着的高甲基化基因之一。寄生乳腺中IGF1R的高甲基化与IGF1R mRNA表达的还原相关。这些数据表明IGF途径在怀孕期间的多个水平调节,并且其修改可能在怀孕的保护作用中至关重要。这支持降低IGF行动以防止乳腺癌的方法,这是目前正在临床测试的概念。 (c)2015年AACR。

著录项

  • 来源
    《Cancer prevention research.》 |2015年第10期|共10页
  • 作者单位

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

    Univ Pittsburgh Dept Biostat Pittsburgh PA 15261 USA;

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

    Univ Texas Rio Grande Valley Dept Biol Edinburg TX USA;

    Genome Inst Singapore Canc Therapeut &

    Stratified Oncol Singapore Singapore;

    Univ Pittsburgh Dept Biostat Pittsburgh PA 15261 USA;

    Univ Pittsburgh Dept Obstet Gynecol &

    Reprod Sci Pittsburgh PA 15260 USA;

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

    Univ Pittsburgh Dept Obstet Gynecol &

    Reprod Sci Pittsburgh PA 15260 USA;

    Univ Pittsburgh Dept Biostat Pittsburgh PA 15261 USA;

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

    Univ Pittsburgh Womens Canc Res Ctr Inst Canc Dept Pharmacol &

    Chem Biol Pittsburgh PA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
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