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Epigenetic Variation in Mice with Defective Imprinting

Epigenetic Variation in Mice with Defective Imprinting
印记缺陷小鼠的表观遗传变异
批准号:
7104790
负责人:
J. RICHARD CHAILLET
金额:
$10.56万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-05-15 至 2007-03-31

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中文摘要
翻译
描述(由申请人提供):本研究的主要目的是了解在缺乏Dnmt 1胞嘧啶甲基转移酶Dnmt 1 o形式的情况下发育的小鼠胚胎中异常表型的原因。要测试的中心前提是,大多数Dnmt 1 o缺陷胚胎死亡,因为它们是具有缺陷印记的细胞的表观遗传镶嵌。因此,它们不能正常发育。该模型系统将允许详细检查表观遗传变异对表型和妊娠结局的影响。目的1:确定Dnmt 1 o缺陷卵母细胞衍生胚胎中表观遗传嵌合现象的性质。来自Dnmt 1(delta 1 o)纯合雌性的胚胎在没有母体提供的Dnmt 1 o的情况下发育,并表现出50%的印迹基因的正常甲基化等位基因的DNA甲基化丢失。每个胚胎都是一个镶嵌体,应该由许多不同的表观遗传细胞类型组成,从印迹基因上大部分正常甲基化的细胞到印迹基因上几乎没有甲基化的细胞。这一预测将通过测量来自Dnmt 10缺陷胚胎的胚胎干细胞(ES)和胚胎成纤维细胞(EF)克隆中的印迹甲基化模式进行测试。目的2:建立Dnmt 1 o缺陷卵母细胞衍生胚胎中表观遗传嵌合现象的来源。Dnmt 1 o依赖性维持甲基化的丧失可能发生在第四个胚胎S期。这一假设将通过测量每个植入前阶段的Dnmt 1 o缺陷胚胎池中的印迹甲基化模式以及使用来自每个Dnmt 1 o缺陷植入前阶段的供体细胞核获得的克隆胚胎来进行测试。目的3:确定Dnmt 1 o缺陷胚胎的可变异常表型的原因。dnmt 1 o缺陷的胚胎死亡,很可能是因为它们的印记缺陷细胞无法促进正常发育。该假设将通过首先定义Dnmt 10缺陷胚胎和胚外组织中存在的形态学异常来检验。之后,Dnmt 10缺陷ES细胞的克隆,每个具有正常和缺陷印记的独特模式的自我更新群体,将测试其促进ES-胚泡和ES-四倍体嵌合体胚胎发育的能力。
英文摘要
DESCRIPTION (provided by applicant): The primary goal of this research is to understand the cause of the abnormal phenotypes in mouse embryos developing in the absence of the Dnmt1o form of the Dnmt1 cytosine methyltransferase. The central premise to be tested is that the majority of Dnmt1o-deficient embryos die because they are epigenetic mosaics of cells that have defective imprints. Consequently, they do not develop normally. This model system will allow a detailed examination of the effect of epigenetic variation on phenotype and pregnancy outcome. Aim 1: Determine the nature of the epigenetic mosaicism in embryos derived from Dnmt1o-deficient oocytes. An embryo derived from a Dnmt1(delta1o) homozygous female develops in the absence of maternally supplied Dnmt1o and exhibits a loss of DNA methylation from 50% of the normally methylated alleles of imprinted genes. Each embryo is a mosaic, and should be comprised of many different epigenetic cell types, ranging from cells with mostly normal methylation on imprinted genes to cells with nearly no methylation on imprinted genes. This prediction will be tested by measuring imprinted methylation patterns in clones of embryonic stem (ES) and embryonic fibroblast (EF) cells derived from Dnmt1o-deficient embryos. Aim 2: Establish the source of the epigenetic mosaicism in embryos derived from Dnmt1o-deficient oocytes. The loss of Dnmt1o-dependent maintenance methylation probably occurs at the fourth embryonic S phase. This hypothesis will be tested by measuring imprinted methylation patterns in pools of Dnmt1o-deficient embryos at each preimplantation stage, and in cloned embryos derived using donor nuclei from each Dnmt1o-deficient preimplantation stage. Aim 3: Determine the cause of the variable, abnormal phenotypes of Dnmt1o-deficient embryos. Dnmt1o-deficient embryos die, most likely because their imprint-defective cells are unable to contribute to normal development. This hypothesis will be tested by first defining the morphological abnormalities present in Dnmt1o-deficient embryos and extraembryonic tissues. Afterwards, clones of Dnmt1o-deficient ES cells, each a self-renewing population with a unique pattern of normal and defective imprints, will be tested for their ability to contribute to embryonic development in ES-blastocyst and ES-tetraploid chimeras.
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The role of genomic imprinting in placental metabolic function
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Epigenetic Variation in Mice with Defective Imprinting
Epigenetic Variation in Mice with Defective Imprinting
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