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Uniparental isodisomy of chromosome 1 results in glycogen storage disease type III with profound growth retardation

机译:染色体1的发单调异瘤结果导致糖原储存疾病III型,具有深刻的生长迟缓

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Background Glycogen storage disease type III (GSDIII) is caused by mutations of AGL gene with debranching enzyme deficiency. Patients with GSDIII manifest fasting hypoglycemia, hepatomegaly, hepatopathy, myopathy, and cardiomyopathy. We report on an 18‐year‐old boy with a profound growth retardation (3? SD ) besides typical clinical features of GSDIII, whereby endocrinological studies were negative. Methods and Results Molecular analysis of AGL gene revealed the homozygous reported variant c.3903_3904insA. Since discordant results from segregation studies showed the carrier status in one parent only, SNP array and short tandem repeats analyses were performed, revealing a paternal disomy of chromosome 1 (UPD1). Conclusion This study describes the first case of GSDIII resulting from UPD1. UPD can play an important role even in case of imprinted genes. DIRAS3 is a maternally imprinted tumor suppressor gene, located on chromosome 1p31, and implicated in growth and oncogenesis. It can be speculated that DIRAS3 overexpression might have a role in the severe short stature of our patient. The study emphasizes the importance of parental segregation analysis especially in patients with recessive conditions to look for specific genetic causes of disease and to estimate properly the risk of family recurrence.
机译:背景技术糖原储存疾病III型(GSDIII)是由AGL基因的突变引起具有脱支酶缺乏的突变引起的。患有GSDIII的患者表现出禁食的低血糖,肝肿大,肝病,肌病和心肌病。除了GSDIII的典型临床特征之外,我们报告了一个具有深远的生长迟缓(<3?SD)的男孩,其中内分泌研究是阴性的。 AgL基因的方法和结果揭示纯合报告变异C.3903_3904 insa。由于分离研究的不间断的结果仅显示了一种父母中的载体状态,因此进行了SNP阵列和短串联重复分析,揭示了染色体的父母生物1(UPD1)。结论本研究描述了由UPD1引起的GSDIII的第一种情况。即使在印记基因的情况下,UPH可以发挥重要作用。 DiaAs3是位于染色体1P31上的母体印迹肿瘤抑制基因,并涉及生长和血管生成。可以推测Diras3过表达可能在我们患者的严重矮小状态中具有作用。该研究强调了父母分离分析的重要性,特别是在隐性条件下寻找特异性遗传原因的患者,并估计家庭复发的风险。

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