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一个患有严重神经表型和黄斑变性的家族中重组X染色体的细胞遗传学和分子特征分析

Cytogenetic and molecular characterization of a recombinant X chromosome in a family with a severe neurologic phenotype and macular degeneration.

作者信息

Magini Pamela, Poscente Monica, Ferrari Simona, Vargiolu Manuela, Bacchelli Elena, Graziano Claudio, Wischmeijer Anita, Turchetti Daniela, Malaspina Elisabetta, Marchiani Valentina, Cordelli Duccio Maria, Franzoni Emilio, Romeo Giovanni, Seri Marco

机构信息

U.O. Genetica Medica, Policlinico Sant'Orsola-Malpighi, DIMEC, Università di Bologna, via Massarenti, 9, Bologna, 40138 Italy.

S.S.V.D. Biologia Molecolare, Citogenetica, Citomorfologia Ematica e Vaginale, Ospedale Belcolle, Viterbo, Italy.

出版信息

Mol Cytogenet. 2015 Aug 1;8:58. doi: 10.1186/s13039-015-0164-1. eCollection 2015.

Abstract

BACKGROUND

Duplications of MECP2 gene in males cause a syndrome characterized by distinctive clinical features, including severe to profound mental retardation, infantile hypotonia, mild dysmorphic features, poor speech development, autistic features, seizures, progressive spasticity and recurrent infections. Patients with complex chromosome rearrangements, leading to Xq28 duplication, share most of the clinical features of individuals with tandem duplications, in particular neurologic problems, suggesting a major pathogenetic role of MECP2 overexpression.

RESULTS

We performed cytogenetic and molecular cytogenetic studies in a previously described family with affected males showing congenital ataxia, late-onset progressive myoclonic encephalopathy and selective macular degeneration. Microsatellite, FISH and array-CGH analyses identified a recombinant X chromosome with a deletion of the PAR1 region, encompassing SHOX, replaced by a duplicated segment of the Xq28 terminal portion, including MECP2.

CONCLUSIONS

Our report describes the identification of the actual genetic cause underlying a severe syndrome that previous preliminary analyses erroneously associated to a terminal Xp22.33 region. In the present family as well as in previously reported patients with similar rearrangements, the observed neurologic phenotype is ascribable to MECP2 duplication, with an undefined contribution of the other involved genes. Maculopathy, presented by affected males reported here, could be a novel clinical feature associated to Xq28 disomy due to recombinant X chromosomes, but at present the underlying pathogenetic mechanism is unknown and this potential clinical correlation should be confirmed through the collection of additional patients.

摘要

背景

男性中MECP2基因重复会导致一种具有独特临床特征的综合征,包括严重至极重度智力障碍、婴儿期肌张力减退、轻度畸形特征、语言发育不良、自闭症特征、癫痫发作、进行性痉挛和反复感染。患有复杂染色体重排导致Xq28重复的患者,具有串联重复个体的大多数临床特征,尤其是神经系统问题,提示MECP2过表达起主要致病作用。

结果

我们对先前描述的一个家系进行了细胞遗传学和分子细胞遗传学研究,该家系中的患病男性表现为先天性共济失调、迟发性进行性肌阵挛性脑病和选择性黄斑变性。微卫星分析、荧光原位杂交(FISH)和比较基因组杂交阵列(array-CGH)分析确定了一条重组X染色体,其PAR1区域缺失,包括SHOX基因,被Xq28末端部分的重复片段取代,其中包括MECP2基因。

结论

我们的报告描述了一种严重综合征实际遗传病因的鉴定,此前的初步分析错误地将其与Xp22.33末端区域相关联。在本家系以及先前报道的具有类似重排的患者中,观察到的神经学表型可归因于MECP2重复,其他相关基因的作用尚不明确。此处报道的患病男性所呈现的黄斑病变,可能是与重组X染色体导致的Xq28二体相关的一种新的临床特征,但目前其潜在致病机制尚不清楚,这种潜在的临床关联应通过收集更多患者来证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a18e/4522089/4e994aa275a1/13039_2015_164_Fig1_HTML.jpg

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