首页> 外文期刊>European journal of human genetics: EJHG >Refinement of the 12q14 microdeletion syndrome: primordial dwarfism and developmental delay with or without osteopoikilosis.
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Refinement of the 12q14 microdeletion syndrome: primordial dwarfism and developmental delay with or without osteopoikilosis.

机译:精炼12q14微缺失综合症:原始侏儒症和发育迟缓,伴或不伴骨质疏松症。

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In their studies on the molecular basis of osteopoikilosis, Menten et al have identified three individuals with microdeletions on chromosome 12q14.4, which removed several genes including LEMD3, the osteopoikilosis gene. In addition to osteopoikilosis, affected individuals had growth retardation and developmental delay. We now report a smaller 12q14.4 microdeletion in a boy with severe pre and postnatal growth failure, and mild developmental delay; the patient was small at birth and presented with poor feeding and failure to thrive during the first 2 years of life, similar to the phenotype of primordial dwarfism or severe Silver-Russell syndrome (SRS). The 12q14 deletion did not include LEMD3, and no signs of osteopoikilosis were observed on skeletal radiographs. Among the deleted genes, HMGA2 is of particular interest in relationship to the aberrant somatic growth in our patient, as HMGA2 variants have been linked to stature variations in the general population and loss of function of Hmga2 in the mouse results in the pygmy phenotype that combines pre and postnatal growth failure, with resistance to the adipogenic effect of overfeeding. Sequencing of the remaining HMGA2 allele in our patient showed a normal sequence, suggesting that HMGA2 haploinsufficiency may be sufficient to produce the aberrant growth phenotype. We conclude that the 12q14.4 microdeletion syndrome can occur with or without deletion of LEMD3 gene; in LEMD3-intact cases, the phenotype includes primordial short stature and failure to thrive with moderate developmental delay, but osteopoikilosis is absent. Such cases will likely be diagnosed as Silver-Russell-like or as primordial dwarfism.
机译:在研究骨质疏松症的分子基础上,Menten等人鉴定出3个在12q14.4染色体上具有微缺失的个体,这些个体删除了包括骨质疏松症基因LEMD3在内的几个基因。除骨质上皮病外,受影响的个体还有发育迟缓和发育延迟。现在,我们报告了一个严重的出生前和出生后生长衰竭以及轻度发育迟缓的男孩的12q14.4微缺失。该患者出生时很小,在出生后的头2年内喂养不良且不能failure壮成长,与原始侏儒症或严重的Silver-Russell综合征(SRS)的表型相似。 12q14缺失不包括LEMD3,并且在骨骼X线片上未观察到骨化病的迹象。在缺失的基因中,HMGA2与我们患者体内异常的体细胞生长有关,这是特别令人感兴趣的,因为HMGA2变体与普通人群的身材变异有关,并且小鼠中Hmga2的功能丧失导致侏儒表型结合产前和产后生长衰竭,对过量喂养的成脂作用有抵抗力。我们患者中其余HMGA2等位基因的测序显示正常序列,这表明HMGA2单倍体不足可能足以产生异常的生长表型。我们得出结论,有或没有LEMD3基因缺失均可发生12q14.4微缺失综合征。在完整的LEMD3病例中,该表型包括原始的矮小身材,并因中度发育迟缓而无法ive壮成长,但不存在骨形成性角化病。此类病例很可能被诊断为类似银-罗素或原始侏儒症。

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