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首页> 外文期刊>Disease models & mechanisms: DMM >Modeling human epigenetic disorders in mice: Beckwith-Wiedemann syndrome and Silver-Russell syndrome
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Modeling human epigenetic disorders in mice: Beckwith-Wiedemann syndrome and Silver-Russell syndrome

机译:在老鼠中建模人体表观症疾病:Beckwith-Wiedemann综合征和银罗素综合征

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摘要

Genomic imprinting, a phenomenon in which the two parental alleles are regulated differently, is observed in mammals, marsupials and a few other species, including seed-bearing plants. Dysregulation of genomic imprinting can cause developmental disorders such as Beckwith-Wiedemann syndrome (BWS) and Silver-Russell syndrome (SRS). In this Review, we discuss (1) how various (epi)genetic lesions lead to the dysregulation of clinically relevant imprinted loci, and (2) how such perturbations may contribute to the developmental defects in BWS and SRS. Given that the regulatory mechanisms of most imprinted clusters are well conserved between mice and humans, numerous mouse models of BWS and SRS have been generated. These mouse models are key to understanding how mutations at imprinted loci result in pathological phenotypes in humans, although there are some limitations. This Review focuses on how the biological findings obtained from innovative mouse models explain the clinical features of BWS and SRS.? 2020. Published by The Company of Biologists Ltd.
机译:基因组印记,在哺乳动物,泥浆和少数其他物种中观察到两个父母等位基因的一种现象,包括种质植物。基因组印记的失调可能导致发育障碍,如Beckwith-Wiedemann综合征(BWS)和银罗素综合征(SRS)。在这篇综述中,我们讨论(1)各种(EPI)遗传病变如何导致临床相关的印记基因座的失调,(2)这种扰动如何有助于BWS和SRS的发育缺陷。鉴于小鼠和人类之间的大多数印迹簇的调节机制很好地保守,已经产生了许多BWS和SRS的小鼠模型。这些鼠标模型是了解在人类的印记基因座的突变如何导致人类的病理表型如何,尽管存在一些局限性。本综述重点介绍如何从创新的小鼠模型中获得的生物学发现如何解释BWS和SRS的临床特征。 2020年。由Biologury Ltd.公司发布

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