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贝克威思-维德曼综合征与1B型假性甲状旁腺功能减退症的共现:巧合还是共同分子机制?

Co-occurrence of Beckwith-Wiedemann syndrome and pseudohypoparathyroidism type 1B: coincidence or common molecular mechanism?

作者信息

Pignata Laura, Cecere Francesco, Acquaviva Fabio, D'Angelo Emilia, Cioffi Daniela, Pellino Valeria, Palumbo Orazio, Palumbo Pietro, Carella Massimo, Sparago Angela, De Brasi Daniele, Cerrato Flavia, Riccio Andrea

机构信息

Department of Environmental Biological and Pharmaceutical Sciences and Technologies (DiSTABiF), Università degli Studi della Campania "Luigi Vanvitelli", Caserta, Italy.

UOSD Genetica Medica, Dipartimento di Pediatria Generale e d'Urgenza, AORN Santobono-Pausilipon, Naples, Italy.

出版信息

Front Cell Dev Biol. 2023 Aug 10;11:1237629. doi: 10.3389/fcell.2023.1237629. eCollection 2023.

Abstract

Imprinting disorders are congenital diseases caused by dysregulation of genomic imprinting, affecting growth, neurocognitive development, metabolism and cancer predisposition. Overlapping clinical features are often observed among this group of diseases. In rare cases, two fully expressed imprinting disorders may coexist in the same patient. A dozen cases of this type have been reported so far. Most of them are represented by individuals affected by Beckwith-Wiedemann spectrum (BWSp) and Transient Neonatal Diabetes Mellitus (TNDM) or BWSp and Pseudo-hypoparathyroidism type 1B (PHP1B). All these patients displayed Multilocus imprinting disturbances (MLID). Here, we report the first case of co-occurrence of BWS and PHP1B in the same individual in absence of MLID. Genome-wide methylation and SNP-array analyses demonstrated loss of methylation of the :TSS-DMR on chromosome 11p15.5 as molecular cause of BWSp, and upd(20)pat as cause of PHP1B. The absence of MLID and the heterodisomy of chromosome 20 suggests that BWSp and PHP1B arose through distinct and independent mechanism in our patient. However, we cannot exclude that the rare combination of the epigenetic defect on chromosome 11 and the UPD on chromosome 20 may originate from a common so far undetermined predisposing molecular lesion. A better comprehension of the molecular mechanisms underlying the co-occurrence of two imprinting disorders will improve genetic counselling and estimate of familial recurrence risk of these rare cases. Furthermore, our study also supports the importance of multilocus molecular testing for revealing MLID as well as complex cases of imprinting disorders.

摘要

印记紊乱是由基因组印记失调引起的先天性疾病,影响生长、神经认知发育、新陈代谢和癌症易感性。在这组疾病中常观察到重叠的临床特征。在罕见情况下,两种完全表达的印记紊乱可能在同一患者中共存。迄今为止已报道了十几例这种类型的病例。其中大多数以受贝克威思-维德曼综合征谱系(BWSp)和短暂性新生儿糖尿病(TNDM)或BWSp和1B型假性甲状旁腺功能减退症(PHP1B)影响的个体为代表。所有这些患者都表现出多位点印记紊乱(MLID)。在此,我们报告首例在同一患者中同时出现BWS和PHP1B且无MLID的病例。全基因组甲基化和SNP阵列分析表明,11号染色体p15.5上的:TSS-DMR甲基化缺失是BWSp的分子原因,而父源单亲二倍体20(upd(20)pat)是PHP1B的原因。无MLID以及20号染色体的异源二体性表明,在我们的患者中,BWSp和PHP1B是通过不同且独立的机制产生的。然而,我们不能排除11号染色体上的表观遗传缺陷与20号染色体上的单亲二倍体的罕见组合可能源自一个迄今尚未确定的共同易感分子病变。更好地理解两种印记紊乱同时出现的分子机制将改善遗传咨询并估计这些罕见病例的家族复发风险。此外,我们的研究还支持多位点分子检测对于揭示MLID以及印记紊乱复杂病例的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09b2/10448386/f3630f843439/fcell-11-1237629-g001.jpg

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