首页> 外文期刊>Nucleic Acids Research >Dlx2 homeobox gene transcriptional regulation of Trkb neurotrophin receptor expression during mouse retinal development.
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Dlx2 homeobox gene transcriptional regulation of Trkb neurotrophin receptor expression during mouse retinal development.

机译:小鼠视网膜发育过程中Trkb神经营养蛋白受体表达的Dlx2同源盒基因转录调控。

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摘要

Dlx homeobox genes are first expressed in embryonic retina at E11.5. The Dlx1/Dlx2 null retina has a reduced ganglion cell layer (GCL), with loss of late-born differentiated retinal ganglion cells (RGCs) due to increased apoptosis. TrkB signaling is proposed to regulate the dynamics of RGC apoptosis throughout development. DLX2 expression markedly precedes the onset of TrkB expression in the GCL; TrkB co-expression with Dlx2 and RGC markers is well-established by E13.5. In the Dlx1/Dlx2 null retina, TrkB expression is significantly reduced by E16.5. We demonstrated that DLX2 binds to a specific region of the TrkB promoter in retinal neuroepithelium during embryogenesis. In vitro confirmation and the functional consequences of DLX2 binding to this TrkB regulatory region support TrkB as a Dlx2 transcriptional target. Furthermore, ectopic Dlx2 expression in retinal explants activates TrkB expression and Dlx2 knockdown in primary retinal cultures results in reduced TrkB expression. RGC differentiation and survival require the coordinated expression of transcription factors. This study establishes a direct transcriptional relationship between a homeodomain protein involved in RGC differentiation and a neurotrophin receptor implicated in RGC survival. Signaling mediated by TrkB may contribute to survival of late-born RGCs whose terminal differentiation is regulated by Dlx gene function.
机译:Dlx同源盒基因首先在E11.5的胚胎视网膜中表达。 Dlx1 / Dlx2无效视网膜的神经节细胞层(GCL)减少,并且由于凋亡增加而导致后期出生的分化型视网膜神经节细胞(RGC)丢失。 TrkB信号被提议来调节整个发育过程中RGC凋亡的动力学。 DLX2表达明显在GCL中TrkB表达开始之前。 E13.5很好地建立了TrkB与Dlx2和RGC标记的共表达。在Dlx1 / Dlx2空视网膜中,E16.5显着降低了TrkB表达。我们证明,DLX2结合胚胎发生过程中视网膜神经上皮细胞中TrkB启动子的特定区域。 DLX2结合此TrkB调节区的体外确认和功能后果支持TrkB作为Dlx2转录靶标。此外,视网膜外植体中的异位Dlx2表达激活了TrkB表达,而在原代视网膜培养物中Dlx2的敲低导致TrkB表达降低。 RGC的分化和生存需要转录因子的协同表达。这项研究建立了参与RGC分化的同源域蛋白与牵涉RGC生存的神经营养蛋白受体之间的直接转录关系。 TrkB介导的信号可能有助于晚期RGC的存活,后者的终末分化受Dlx基因功能的调节。

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