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首页> 外文期刊>Hormone research >Silver-Russell and Beckwith-Wiedemann syndromes: opposite (epi)mutations in 11p15 result in opposite clinical pictures.
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Silver-Russell and Beckwith-Wiedemann syndromes: opposite (epi)mutations in 11p15 result in opposite clinical pictures.

机译:Silver-Russell和Beckwith-Wiedemann综合征:11p15中相反的(epi)突变导致相反的临床表现。

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摘要

Progress in the identification of the (epi)genetic basis of imprinting disorders has provided greater insight into the central role of imprinted genes in regular human growth. In addition to the well-known Prader-Willi, Angelman, and Beckwith-Wiedemann syndromes, imprinting disturbances have recently been identified in transient neonatal diabetes mellitus, uniparental disomy (14) syndromes and Silver- Russell syndrome (SRS). Among these diseases, the growth retardation disorder SRS is unique because it is the first human disorder associated with epigenetic mutations that affect two different chromosomes. In addition to maternal uniparental disomy of chromosome 7, hypomethylation of the imprinting control region 1 in 11p15 and maternal duplication of 11p15 have recently been described as major (epi)genetic disturbances in SRS. Interestingly, opposite (epi)- mutations are involved in the overgrowth disease Beckwith-Wiedemann syndrome (BWS). Thus SRS and BWS can be regarded as two genetically and clinically opposite clinical pictures. Although not yet completely understood, SRS and BWS can be used as models to decipher the functional link between the observed (epi)genetic mutations and the clinical features in individuals with disturbed growth. Future studies will clarify the complex basis of human growth and hopefully contribute to better-directed therapies.
机译:印迹疾病的(epi)遗传基础的鉴定进展为印迹基因在人类正常生长中的核心作用提供了更深入的了解。除了著名的Prader-Willi,Angelman和Beckwith-Wiedemann综合征外,最近在短暂性新生儿糖尿病,单亲二体性(14)综合征和Silver-Russell综合征(SRS)中也发现了印迹障碍。在这些疾病中,发育迟缓疾病SRS是独特的,因为它是与影响两个不同染色体的表观遗传突变相关的第一个人类疾病。除了染色体7的母亲单亲二体性之外,最近已将11p15中的印迹控制区1的甲基化不足和母亲11p15的复制描述为SRS中的主要(表观)遗传障碍。有趣的是,相反的(epi)-突变与过度生长疾病Beckwith-Wiedemann综合征(BWS)有关。因此,SRS和BWS可以看作是两个遗传和临床相对的临床图片。尽管尚未完全理解,但SRS和BWS可以用作模型,以破译观察到的(epi)遗传突变与生长受阻的个体的临床特征之间的功能联系。未来的研究将阐明人类成长的复杂基础,并有望为更好的治疗方法做出贡献。

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