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首页> 外文期刊>Advances in Experimental Medicine and Biology >Reporter Analyses Reveal Redundant Enhancers that Confer Robustness on Cis-Regulatory Mechanisms
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Reporter Analyses Reveal Redundant Enhancers that Confer Robustness on Cis-Regulatory Mechanisms

机译:记者分析揭示了赋予CIS-MOVICATION机制鲁棒性的冗余增强剂

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摘要

Reporter analyses of Hox1 and Brachyury (Bra) genes have revealed examples of redundant enhancers that provide regulatory robustness. Retinoic acid (RA) activates through an RA-response element the transcription of Hox1 in the nerve cord of the ascidian Ciona intestinalis. We also found a weak RA-independent neural enhancer within the second intron of Hox1. The Hox1 gene in the larvacean Oikopleura dioica is also expressed in the nerve cord. The O. dioica genome, however, does not contain the RA receptor-encoding gene, and the expression of Hox1 has become independent of RA. We have found that the upstream sequence of the O. dioica Hox1 was able to activate reporter gene expression in the nerve cord of the C. intestinalis embryo, suggesting that an RA-independent regulatory system in the nerve cord might be common in larvaceans and ascidians. This RA-independent redundant regulatory system may have facilitated the Oikopleura ancestor losing RA signaling without an apparent impact on Hox1 expression domains. On the other hand, vertebrate Bra is expressed in the ventral mesoderm and notochord, whereas its ascidian ortholog is exclusively expressed in the notochord. Fibroblast growth factor (FGF) induces Bra in the ventral mesoderm in vertebrates, whereas it induces Bra in the notochord in ascidians. Disruption of the FGF signal does not completely silence Bra expression in ascidians, suggesting that FGF-dependent and independent enhancers might comprise a redundant regulatory system in ascidians. The existence of redundant enhancers, therefore, provides regulatory robustness that may facilitate the acquisition of new expression domains.
机译:Hox1和Brachyury(文胸)基因的记者分析揭示了提供监管鲁棒性的冗余增强剂的实例。通过RA响应元件通过RA-respaction元件在阿立西亚癌尼炎的神经帘线中的RA-respaction元件中活化。我们还发现了霍昔尔二内含子内的弱RA-Indemisory神经增强剂。幼虫Oikopleura Dioica中的Hox1基因也表达在神经脐带中。然而,O. DioICA基因组不含RA受体编码基因,并且Hox1的表达已经与Ra无关。我们发现O. DioICA Hox1的上游序列能够激活C. Intestinalis胚胎的神经帘线中的报道基因表达,表明神经帘线中的RA独立的调节系统可能是幼虫和阿立维亚人群。该RA独立的冗余监管系统可能已经促进了Oikopleura祖先失去了Ra信号,而不会对Hox1表达域的表观影响。另一方面,脊椎动物胸罩在腹侧胚芽和脊索中表达,而其阿立迪亚特·邻肠溶液在脊索中仅在脊索中表达。成纤维细胞生长因子(FGF)在脊椎动物中诱导胸膜中胚层中的文胸,而它诱导在阿立维亚人的脊索中的胸罩。 FGF信号的破坏并不完全沉默于阿立维亚人的胸罩表达,表明FGF依赖性和独立的增强剂可能包括阿立维亚人的冗余监管系统。因此,冗余增强剂的存在提供了可促进收购新表达域的监管稳健性。

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