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首页> 外文期刊>Genome Biology >Reduced levels of two modifiers of epigenetic gene silencing, Dnmt3a and Trim28, cause increased phenotypic noise
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Reduced levels of two modifiers of epigenetic gene silencing, Dnmt3a and Trim28, cause increased phenotypic noise

机译:表观遗传基因沉默的两个修饰子Dnmt3a和Trim28的水平降低导致表型噪声增加

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摘要

Background: Inbred individuals reared in controlled environments display considerable variance in many complex traits but the underlying cause of this intangible variation has been an enigma. Here we show that two modifiers of epigenetic gene silencing play a critical role in the process. Results: Inbred mice heterozygous for a null mutation in DNA methyltransferase 3a (Dnmt3a) or tripartite motif protein 28 (Trim28) show greater coefficients of variance in body weight than their wild-type littermates. Trim28 mutants additionally develop metabolic syndrome and abnormal behavior with incomplete penetrance. Genome- wide gene expression analyses identified 284 significantly dysregulated genes in Trim28 heterozygote mutants compared to wild-type mice, with Mas1, which encodes a G-protein coupled receptor implicated in lipid metabolism, showing the greatest average change in expression (7.8-fold higher in mutants). This gene also showed highly variable expression between mutant individuals. Conclusions: These studies provide a molecular explanation of developmental noise in whole organisms and suggest that faithful epigenetic control of transcription is central to suppressing deleterious levels of phenotypic variation. These findings have broad implications for understanding the mechanisms underlying sporadic and complex disease in humans.
机译:背景:在受控环境中饲养的近交个体在许多复杂性状上表现出可观的差异,但这种无形变异的根本原因却是一个谜。在这里,我们表明表观遗传基因沉默的两个修饰因子在该过程中起着至关重要的作用。结果:DNA甲基转移酶3a(Dnmt3a)或三方基序蛋白28(Trim28)的​​无效突变杂合的近交小鼠显示出比野生型同窝小鼠更大的体重变异系数。 Trim28突变体还发展出代谢综合征和不完全外显的异常行为。全基因组基因表达分析发现,与野生型小鼠相比,Trim28杂合子突变体中的284个基因失调严重,其中Mas1编码与脂质代谢有关的G蛋白偶联受体,表现出最大的平均表达变化(高7.8倍)在突变体中)。该基因还在突变个体之间显示出高度可变的表达。结论:这些研究为整个生物中的发育噪声提供了分子解释,并表明忠实的转录表观遗传控制对于抑制表型变异的有害水平至关重要。这些发现对理解人类零星和复杂疾病的潜在机制具有广泛的意义。

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