首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >p75 neurotrophin receptor is a clock gene that regulates oscillatory components of circadian and metabolic networks
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p75 neurotrophin receptor is a clock gene that regulates oscillatory components of circadian and metabolic networks

机译:p75神经营养蛋白受体是一个时钟基因,可调节昼夜节律和代谢网络的振荡成分

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The p75 neurotrophin receptor (p75 NTR) is a member of the tumor necrosis factor receptor superfamily with a widespread pattern of expression in tissues such as the brain, liver, lung, and muscle. The mechanisms that regulate p75NTR transcription in the nervous system and its expression in other tissues remain largely unknown. Here we show that p75NTR is an oscillating gene regulated by the helix-loophelix transcription factors CLOCK and BMAL1. The p75NTR promoter contains evolutionarily conserved noncanonical E-box enhancers. Deletion mutagenesis of the p75NTR-luciferase reporter identified the - 1039 conserved E-box necessary for the regulation of p75NTR by CLOCK and BMAL1. Accordingly, gel-shift assays confirmed the binding of CLOCK and BMAL1 to the p75NTR 1039 E-box. Studies in mice revealed that p75NTR transcription oscillates during dark and light cycles not only in the suprachiasmatic nucleus (SCN), but also in peripheral tissues including the liver. Oscillation of p75NTR is disrupted in Clock-deficient and mutant mice, is E-box dependent, and is in phase with clock genes, such as Per1 and Per2. Intriguingly, p75NTR is required for circadian clock oscillation, since loss of p75NTR alters the circadian oscillation of clock genes in the SCN, liver, and fibroblasts. Consistent with this, Per2::Luc/p75NTR-/- liver explants showed reduced circadian oscillation amplitude compared with those of Per2::Luc/p75NTR+/+. Moreover, deletion of p75NTR also alters the circadian oscillation of glucose and lipid homeostasis genes. Overall, our findings reveal that the transcriptional activation of p75NTR is under circadian regulation in the nervous system and peripheral tissues, and plays an important role in the maintenance of clock and metabolic gene oscillation.
机译:p75神经营养蛋白受体(p75 NTR)是肿瘤坏死因子受体超家族的成员,在脑,肝,肺和肌肉等组织中广泛表达。在神经系统中调节p75NTR转录及其在其他组织中表达的机制仍然未知。在这里,我们显示p75NTR是由螺旋-loophelix转录因子CLOCK和BMAL1调控的振荡基因。 p75NTR启动子包含进化保守的非经典E-box增强子。 p75NTR-荧光素酶报告基因的缺失诱变确定了CLOCK和BMAL1调节p75NTR所必需的-1039保守E-box。因此,凝胶移位试验证实了CLOCK和BMAL1与p75NTR 1039 E-box的结合。小鼠研究表明,p75NTR转录不仅在视交叉上核(SCN)中而且在包括肝脏在内的周围组织中在黑暗和光明周期中都振荡。 p75NTR的振荡在时钟缺陷型和突变型小鼠中被破坏,是E-box依赖性的,并且与时钟基因(例如Per1和Per2)同相。有趣的是,昼夜节律振荡需要p75NTR,因为p75NTR的缺失会改变SCN,肝脏和成纤维细胞中时钟基因的昼夜节律振荡。与此一致的是,与Per2 :: Luc / p75NTR + / +相比,Per2 :: Luc / p75NTR-/-肝脏外植体的昼夜节律振荡幅度降低。而且,p75NTR的缺失也改变了葡萄糖和脂质稳态基因的昼夜节律振荡。总体而言,我们的发现表明p75NTR的转录激活在神经系统和周围组织的昼夜节律调节下,在维持时钟和代谢基因振荡中起着重要作用。

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