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首页> 外文期刊>BMC Genomics >Cross-species transcriptomic analysis elucidates constitutive aryl hydrocarbon receptor activity
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Cross-species transcriptomic analysis elucidates constitutive aryl hydrocarbon receptor activity

机译:跨物种转录组分析阐明了本构芳基烃受体的活性

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Research on the aryl hydrocarbon receptor (AHR) has largely focused on variations in toxic outcomes resulting from its activation by halogenated aromatic hydrocarbons. But the AHR also plays key roles in regulating pathways critical for development, and after decades of research the mechanisms underlying physiological regulation by the AHR remain poorly characterized. Previous studies identified several core genes that respond to xenobiotic AHR ligands across a broad range of species and tissues. However, only limited inferences have been made regarding its role in regulating constitutive gene activity, i.e. in the absence of exogenous ligands. To address this, we profiled transcriptomic variations between AHR-active and AHR-less-active animals in the absence of an exogenous agonist across five tissues, three of which came from rats (hypothalamus, white adipose and liver) and two of which came from mice (kidney and liver). Because AHR status alone has been shown sufficient to alter transcriptomic responses, we reason that by contrasting profiles amongst AHR-variant animals, we may elucidate effects of the AHR on constitutive mRNA abundances. We found significantly more overlap in constitutive mRNA abundances amongst tissues within the same species than from tissues between species and identified 13 genes (Agt, Car3, Creg1, Ctsc, E2f6, Enpp1, Gatm, Gstm4, Kcnj8, Me1, Pdk1, Slc35a3, and Sqrdl) that are affected by AHR-status in four of five tissues. One gene, Creg1, was significantly up-regulated in all AHR-less-active animals. We also find greater overlap between tissues at the pathway level than at the gene level, suggesting coherency to the AHR signalling response within these processes. Analysis of regulatory motifs suggests that the AHR mostly mediates transcriptional regulation via direct binding to response elements. These findings, though preliminary, present a platform for further evaluating the role of the AHR in regulation of constitutive mRNA levels and physiologic function.
机译:对芳烃受体(AHR)的研究主要集中在由卤代芳烃活化而导致的毒性结果变化上。但是,AHR在调节对发育至关重要的途径中也起着关键作用,并且经过数十年的研究,AHR进行生理调节的基本机制仍知之甚少。先前的研究确定了对多种物种和组织的异种AHR配体有响应的几个核心基因。但是,关于其在调节组成型基因活性中的作用,即在没有外源配体的情况下,仅作了有限的推论。为了解决这个问题,我们分析了在五个组织中都没有外源激动剂的情况下,AHR活跃和AHR缺乏活跃的动物之间的转录组差异,其中三个来自大鼠(下丘脑,白色脂肪和肝脏),其中两个来自大鼠小鼠(肾脏和肝脏)。由于仅显示AHR状态足以改变转录组反应,因此我们认为,通过对比AHR变异动物之间的概况,我们可以阐明AHR对组成型mRNA丰度的影响。我们发现同一物种内组织之间的组成性mRNA丰度比物种间组织的重叠多得多,并鉴定出13种基因(Agt,Car3,Creg1,Ctsc,E2f6,Enpp1,Gatm,Gstm4,Kcnj8,Me1,Pdk1,Slc35a3和在5个组织中的4个中受AHR状态影响的Sqrdl)。在所有AHR缺乏活动的动物中,一个基因Creg1被显着上调。我们还发现,在途径水平上比基因水平上组织之间的重叠更大,这表明在这些过程中与AHR信号传导反应的一致性。调节基序的分析表明,AHR主要通过直接结合应答元件来介导转录调节。这些发现尽管是初步的,但为进一步评估AHR在调节组成型mRNA水平和生理功能中的作用提供了平台。

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