Imprinting mechanisms and genes involved in Prader-Willi and Angelman syndromes

Robert D. Nicholls
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引用次数: 3

Abstract

Prader-Willi (PWS) and Angelman (AS) syndromes illustrate a disease paradigm of genomic imprinting, an epigenetic modification of DNA that results in parent-of-origin specific expression during embryogenesis and in the adult. From genetic data, at least two imprinted genes may be required for the classical PWS phenotype, whereas AS probably involves a single imprinted gene, and rare familial forms of both disorders involve imprinting mutations. In addition, the nonimprinted P gene is associated with pigmentation disorders in PWS, AS and oculocutaneous albinism. Identification of new genes, delineation of small deletions in unique patients, and direct screening for imprinted sequences, should soon identify candidate genes for PWS and AS. The mechanism of imprinting involves DNA methylation and replication timing, and appears to include multiple imprinted genes within a large imprinted domain. Imprinting of these genes may be regulated in cis, by an imprinting control element (ICE). Future studies can be expected to unravel the gene identities and imprinting mechanisms involved in these fascinating disorders; ultimately it may be possible to reactivate imprinted gene expression as a therapeutic approach.

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Prader-Willi综合征和Angelman综合征的印迹机制和基因
Prader-Willi (PWS)和Angelman (AS)综合征说明了基因组印记的一种疾病范式,这是一种DNA的表观遗传修饰,在胚胎发生和成人中导致亲本特异性表达。从遗传数据来看,典型的PWS表型可能需要至少两个印迹基因,而AS可能涉及单个印迹基因,两种疾病的罕见家族形式都涉及印迹突变。此外,非印迹P基因与PWS、AS和眼皮肤白化病的色素沉着障碍有关。鉴定新基因,描述独特患者的小缺失,以及直接筛选印迹序列,应该很快确定PWS和AS的候选基因。印迹的机制涉及DNA甲基化和复制时间,似乎包括在一个大的印迹结构域内的多个印迹基因。这些基因的印记可以通过印记控制元件(ICE)顺式调节。未来的研究有望揭示这些令人着迷的疾病所涉及的基因身份和印记机制;最终有可能重新激活印迹基因表达作为一种治疗方法。
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