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Brn3a regulation of TrkA/NGF receptor expression in developing sensory neurons.

机译:Brn3a调节发育中的感觉神经元中TrkA / NGF受体的表达。

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The TrkA/NGF receptor is essential for the survival and differentiation of sensory neurons. The molecular mechanisms regulating tissue and stage-specific expression of TrkA are largely unknown. The Brn3a POU-domain transcription factor has been implicated in the development of the PNS and proposed as a transcription regulator for TrkA. The molecular mechanisms underlying the regulation of TrkA by Brn3a is unclear. In this study, we provide genetic, transgenic and biochemical evidence that Brn3a binds to novel, specific sites in the 457 bp enhancer that regulates TrkA expression in embryonic sensory neurons. We employ Bax-knockout mice, in which sensory neurons no longer require neurotrophins for survival, to uncouple TrkA-dependent cell death from downregulation of TrkA expression. In addition, when mutagenized, the novel Brn3a-binding sites identified fail to drive appropriate reporter transgene expression in sensory neurons. Thus, TrkA, a gene that is crucial for the differentiation and survival of sensory nociceptive neurons, requires Brn3a to maintain normal transcriptional activity.
机译:TrkA / NGF受体对于感觉神经元的存活和分化至关重要。调节TrkA的组织和阶段特异性表达的分子机制在很大程度上是未知的。 Brn3a POU结构域转录因子已经牵涉到PNS的发展,并被提议作为TrkA的转录调节因子。 Brn3a调控TrkA的分子机制尚不清楚。在这项研究中,我们提供了Brn3a与457 bp增强子中新的特异性位点结合的遗传,转基因和生物化学证据,该增强子调节胚胎感觉神经元中TrkA的表达。我们采用Bax基因敲除小鼠,其中感觉神经元不再需要神经营养素才能生存,以使TrkA依赖性细胞死亡与TrkA表达下调脱钩。此外,诱变时,新的Brn3a结合位点确定无法驱动感觉神经元中适当的记者转基因表达。因此,TrkA是一种对感觉伤害感受神经元的分化和存活至关重要的基因,它需要Brn3a维持正常的转录活性。

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