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PNAS Plus: Control of Hoxd gene transcription in the mammary bud by hijacking a preexisting regulatory landscape

机译:PNAS Plus:通过劫持先前存在的监管环境来控制乳芽中Hoxd基因的转录

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摘要

Vertebrate Hox genes encode transcription factors operating during the development of multiple organs and structures. However, the evolutionary mechanism underlying this remarkable pleiotropy remains to be fully understood. Here, we show that Hoxd8 and Hoxd9, two genes of the HoxD complex, are transcribed during mammary bud (MB) development. However, unlike in other developmental contexts, their coexpression does not rely on the same regulatory mechanism. Hoxd8 is regulated by the combined activity of closely located sequences and the most distant telomeric gene desert. On the other hand, Hoxd9 is controlled by an enhancer-rich region that is also located within the telomeric gene desert but has no impact on Hoxd8 transcription, thus constituting an exception to the global regulatory logic systematically observed at this locus. The latter DNA region is also involved in Hoxd gene regulation in other contexts and strongly interacts with Hoxd9 in all tissues analyzed thus far, indicating that its regulatory activity was already operational before the appearance of mammary glands. Within this DNA region and neighboring a strong limb enhancer, we identified a short sequence conserved in therian mammals and capable of enhancer activity in the MBs. We propose that Hoxd gene regulation in embryonic MBs evolved by hijacking a preexisting regulatory landscape that was already at work before the emergence of mammals in structures such as the limbs or the intestinal tract.
机译:脊椎动物Hox基因编码在多个器官和结构发育过程中起作用的转录因子。但是,这种非同寻常的多效性的进化机制还有待充分理解。在这里,我们显示Hoxd复合体的两个基因Hoxd8和Hoxd9在乳腺芽(MB)发育过程中被转录。但是,与其他发展环境不同,它们的共表达不依赖于相同的调控机制。 Hoxd8受位置接近的序列和最远的端粒基因desert的联合活性调节。另一方面,Hoxd9受一个富集增强子的区域控制,该区域也位于端粒基因沙漠之内,但对Hoxd8转录没有影响,因此构成了在该基因座系统观察到的全局调控逻辑的例外。后者的DNA区域在其他情况下也参与Hoxd基因的调控,并且在迄今为止分析的所有组织中都与Hoxd9强烈相互作用,这表明其调控活性在乳腺出现之前已经起作用。在这个DNA区域内和邻近的强壮的肢体增强子,我们确定了在兽人哺乳动物中保守的短序列,并且能够在MBs中增强增强子的活性。我们提出,通过劫持一个先前存在的监管格局来发展胚胎MB中的Hoxd基因调控,该格局已经在哺乳动物出现在诸如肢体或肠道等结构中之前开始起作用。

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