首页> 外文期刊>European journal of human genetics: EJHG >Separation of the PROX1 gene from upstream conserved elements in a complex inversion/translocation patient with hypoplastic left heart.
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Separation of the PROX1 gene from upstream conserved elements in a complex inversion/translocation patient with hypoplastic left heart.

机译:患有左心发育不全的复杂倒置/移位患者中PROX1基因与上游保守元件的分离。

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Hypoplastic left heart (HLH) occurs in at least 1 in 10 000 live births but may be more common in utero. Its causes are poorly understood but a number of affected cases are associated with chromosomal abnormalities. We set out to localize the breakpoints in a patient with sporadic HLH and a de novo translocation. Initial studies showed that the apparently simple 1q41;3q27.1 translocation was actually combined with a 4-Mb inversion, also de novo, of material within 1q41. We therefore localized all four breakpoints and found that no known transcription units were disrupted. However we present a case, based on functional considerations, synteny and position of highly conserved non-coding sequence elements, and the heterozygous Prox1(+/-) mouse phenotype (ventricular hypoplasia), for the involvement of dysregulation of the PROX1 gene in the aetiology of HLH in this case. Accordingly, we show that the spatial expression pattern of PROX1 in the developing human heart is consistent with a role in cardiac development. We suggest that dysregulation of PROX1 gene expression due to separation from its conserved upstream elements is likely to have caused the heart defects observed in this patient, and that PROX1 should be considered as a potential candidate gene for other cases of HLH. The relevance of another breakpoint separating the cardiac gene ESRRG from a conserved downstream element is also discussed.
机译:发育不良的左心(HLH)至少有1万例活产中发生,但在子宫内可能更常见。人们对其病因了解甚少,但许多受影响的病例都与染色体异常有关。我们着手确定散发性HLH和从头移位的患者的断点。初步研究表明,看似简单的1q41; 3q27.1易位实际上与1q41内物质的4-Mb反演(从头开始)结合在一起。因此,我们对所有四个断点进行了定位,发现没有已知的转录单位被破坏。但是,我们基于功能考虑,高度保守的非编码序列元件的同位和位置以及杂合的Prox1(+/-)小鼠表型(脑室发育不全)提出了一个案例,涉及PROX1基因的失调。在这种情况下HLH的病因。因此,我们表明在人类心脏发育中PROX1的空间表达模式与心脏发育中的作用是一致的。我们认为,由于从其保守的上游元件分离而引起的PROX1基因表达失调很可能引起了该患者的心脏缺陷,因此PROX1应该被视为其他HLH病例的潜在候选基因。还讨论了将心脏基因ESRRG与保守的下游元件分开的另一个断点的相关性。

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