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Overdosage of Hand2 causes limb and heart defects in the human chromosomal disorder partial trisomy distal 4q

机译:Hand2的过量使用会导致人类染色体疾病部分三体性远端4q的肢体和心脏缺陷

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Partial trisomy distal 4q (denoted 4q+) is a human chromosomal disorder caused by duplication of the distal end of the long arm of chromosome 4 (Chr4). This disorder manifests typical phenotypes, including craniofacial, renal, heart and thumb developmental defects. Although these clinical features are likely caused by a dosage imbalance in the gene network involving the trisomic region, the causative gene or genes and the molecular bases are largely unknown. Here, we report mouse Recombination-induced mutation 4 (Rim4) as a model animal of 4q+. The Rim4 genome contains an insertion of a 6.5 Mb fragment from mouse chromosome 8 into chromosome 6. This insertion fragment contains 17 genes, including Hand2, that encode the basic helix-loop-helix transcription factor and is syntenic to the distal end of human Chr4, 4q32.3 to 4q34.1, which is responsible for 4q+. A comparison of phenotypes between patients with Rim4 and 4q+ revealed that Rim4 shows direct parallels with many phenotypes of 4q+ such as craniofacial, heart, cervical vertebra and limb deformities. Rebalancing the gene dosage by a genetic cross with Hand2 knockout mice ameliorated symptoms of the heart and limb deformities of Rim4. Conversely, an increase in copy number of Hand2 in wild-type mice recaptures the heart and limb deformities of Rim4. Our results collectively demonstrate that overdosage of Hand2 is a major cause for at least the limb and heart phenotypes of 4q+ and that mouse Rim4 provides a unique animal model for understanding the molecularbases underlying the complex phenotypes of 4q+.
机译:部分三体性远端4q(表示为4q +)是一种人类染色体疾病,由染色体4长臂(Chr4)长臂末端的重复引起。这种疾病表现出典型的表型,包括颅面,肾脏,心脏和拇指发育缺陷。尽管这些临床特征很可能是由涉及三体区的基因网络中的剂量失衡引起的,但致病基因或分子碱基在很大程度上是未知的。在这里,我们报告小鼠重组诱导的突变4(Rim4)作为4q +的模型动物。 Rim4基因组包含一个从小鼠染色体8到染色体6的6.5 Mb片段插入。该插入片段包含17个基因,包括Hand2,其编码基本的螺旋-环-螺旋转录因子,并与人Chr4的远端同义,4q32.3到4q34.1,这负责4q +。比较Rim4和4q +患者的表型后发现,Rim4与4q +的许多表型(如颅面,心脏,颈椎和四肢畸形)直接相似。通过与Hand2基因敲除小鼠的遗传杂交来平衡基因剂量,从而改善了Rim4的心脏和四肢畸形的症状。相反,野生型小鼠中Hand2拷贝数的增加重新捕获了Rim4的心脏和肢体畸形。我们的结果共同证明,Hand2的过量使用至少是造成4q +肢体和心脏表型的主要原因,并且小鼠Rim4提供了独特的动物模型来理解4q +复杂表型的分子基础。

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