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ZFP57 and the Targeted Maintenance of Postfertilization Genomic Imprints

机译:ZFP57和Postferization基因组印记的目标维护

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Epigenetic modifications play an important role in modulating genome function. In mammals, inappropriate epigenetic states can cause embryonic lethality and various acquired and inherited diseases; hence, it is important to understand how such states are formed and maintained in particular genomic contexts. Genomic imprinting is a process in which epigenetic states provide a sustained memory of parental origin and cause gene expression/repression from only one of the two parental chromosomes. Genomic imprinting is therefore a valuable model to decipher the principles and processes associated with the targeting and maintenance of epigenetic states in general. Krüppel-associated box zinc finger proteins (KRAB-ZFPs) are proteins that have the potential to mediate this. ZFP57, one of the best characterized proteins in this family, has been shown to target and maintain epigenetic states at imprinting control regions after fertilization. Its role in imprinting through the use of ZFP57 mutants in mouse and the wider implications of KRAB-ZFPs for the targeted maintenance of epigenetic states are discussed here.
机译:表观遗传修饰在调节基因组功能中起重要作用。在哺乳动物中,不适当的表观遗传态会导致胚胎致死性和各种获得的和遗传疾病;因此,重要的是要了解这些国家如何形成和维持特定的基因组背景。基因组印记是一种过程,其中表观遗传状态提供持续记忆父母源性的持续记忆,并使只有两个亲本染色体中的一种引起基因表达/抑制。因此,基因组印记是一种有价值的模型,用于破译与映射和维持表观遗传状态的靶向和维持相关的原理和过程。 Krüppel相关的盒子锌指蛋白(Krab-ZFP)是具有介导的蛋白质的蛋白质。 ZFP57是该家庭中最佳特征的蛋白质之一,已被证明在受精后对印迹控制区域进行靶向和维持表观遗传状态。这里讨论了它在小鼠中使用ZFP57突变体的印记中的作用以及Krab-ZFP对脑表表态态的较广泛影响。

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