首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >HOXA13 regulates Aldh1a2 expression in the autopod to facilitate interdigital programmed cell death
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HOXA13 regulates Aldh1a2 expression in the autopod to facilitate interdigital programmed cell death

机译:HOXA13调节autopod中的Aldh1a2表达,以促进叉指编程性细胞死亡

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Background: Retinoic acid (RA), plays an essential role in the growth and patterning of vertebrate limb. While the developmental processes regulated by RA are well understood, little is known about the transcriptional mechanisms required to precisely control limb RA synthesis. Here, Aldh1a2 functions as the primary enzyme necessary for RA production which regulates forelimb outgrowth and hindlimb digit separation. Because mice lacking HOXA13 exhibit similar defects in digit separation as Aldh1a2 mutants, we hypothesized that HOXA13 regulates Aldh1a2 to facilitate RA-mediated interdigital programmed cell death (IPCD) and digit separation. Results: In this report, we identify Aldh1a2 as a direct target of HOXA13. In absence of HOXA13 function, Aldh1a2 expression, RA signaling, and IPCD are reduced. In the limb, HOXA13 binds a conserved cis-regulatory element in the Aldh1a2 locus that can be regulated by HOXA13 to promote gene expression. Finally, decreased RA signaling and IPCD can be partially rescued in the Hoxa13 mutant hindlimb by maternal RA supplementation. Conclusions: Defects in IPCD and digit separation in Hoxa13 mutant mice may be caused in part by reduced levels of RA signaling stemming from a loss in the direct regulation of Aldh1a2. These findings provide new insights into the transcriptional regulation of RA signaling necessary for limb morphogenesis.
机译:背景:维甲酸(RA)在脊椎动物肢体的生长和模式形成中起着至关重要的作用。尽管人们很好地了解了RA调控的发育过程,但对于精确控制肢体RA合成所需的转录机制知之甚少。在这里,Aldh1a2作为产生RA所必需的主要酶,它调节前肢的生长和后肢的手指分离。因为缺少HOXA13的小鼠在手指分离方面表现出与Aldh1a2突变体相似的缺陷,因此我们假设HOXA13调节Aldh1a2以促进RA介导的跨指编程性细胞死亡(IPCD)和手指分离。结果:在本报告中,我们确定Aldh1a2为HOXA13的直接靶标。在没有HOXA13功能的情况下,Aldh1a2表达,RA信号传导和IPCD减少。在肢体中,HOXA13与Aldh1a2基因座中的保守顺式调控元件结合,可以由HOXA13调控以促进基因表达。最后,通过补充母体RA,可以在Hoxa13突变体后肢中部分挽救降低的RA信号和IPCD。结论:Hoxa13突变小鼠的IPCD和手指分离缺陷可能部分是由于直接调节Aldh1a2的缺失导致RA信号水平降低所致。这些发现为肢体形态发生所必需的RA信号的转录调控提供了新的见识。

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