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Scapula development is governed by genetic interactions of Pbx1 with its family members and with Emx2 via their cooperative control of Alx1

机译:肩cap骨的发育受Pbx1与其家族成员和Emx2的遗传相互作用控制,并通过其对Alx1的协同控制

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摘要

The genetic pathways underlying shoulder blade development are largely unknown, as gene networks controlling limb morphogenesis have limited influence on scapula formation. Analysis of mouse mutants for Pbx and Emx2 genes has suggested their potential roles in girdle development. In this study, by generating compound mutant mice, we examined the genetic control of scapula development by Pbx genes and their functional relationship with Emx2. Analyses of Pbx and Pbx1;Emx2 compound mutants revealed that Pbx genes share overlapping functions in shoulder development and that Pbx1 genetically interacts with Emx2 in this process. Here, we provide a biochemical basis for Pbx1;Emx2 genetic interaction by showing that Pbx1 and Emx2 can bind specific DNA sequences as heterodimers. Moreover, the expression of genes crucial for scapula development is altered in these mutants, indicating that Pbx genes act upstream of essential pathways for scapula formation. In particular, expression of Alx1, an effector of scapula blade patterning, is absent in all compound mutants. We demonstrate that Pbx1 and Emx2 bind in vivo to a conserved sequence upstream of Alx1 and cooperatively activate its transcription via this potential regulatory element. Our results establish an essential role for Pbx1 in genetic interactions with its family members and with Emx2 and delineate novel regulatory networks in shoulder girdle development.
机译:肩blade骨发育的遗传途径在很大程度上尚不清楚,因为控制肢体形态发生的基因网络对肩s骨形成的影响有限。对Pbx和Emx2基因的小鼠突变体的分析表明,它们在腰带发育中具有潜在的作用。在这项研究中,通过生成复合突变小鼠,我们检查了Pbx基因对肩cap骨发育的遗传控制及其与Emx2的功能关系。对Pbx和Pbx1; Emx2复合突变体的分析显示,Pbx基因在肩部发育中具有重叠的功能,在此过程中Pbx1与Emx2发生了遗传相互作用。在这里,我们通过显示Pbx1和Emx2可以结合特定的DNA序列作为异二聚体,为Pbx1; Emx2遗传相互作用提供生化基础。此外,在这些突变体中,对肩cap骨发育至关重要的基因的表达发生了变化,表明Pbx基因在肩骨形成的基本途径中起作用。特别是,在所有复合突变体中都没有表达肩x骨刀片模式的效应子Alx1。我们证明Pbx1和Emx2在体内结合到Alx1上游的保守序列,并通过这种潜在的调控元件协同激活其转录。我们的研究结果确立了Pbx1在与其家族成员和Emx2的遗传相互作用中的重要作用,并描绘了肩带发展中的新型调控网络。

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