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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Dual role of Tlx3 as modulator of Prrxl1 transcription and phosphorylation
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Dual role of Tlx3 as modulator of Prrxl1 transcription and phosphorylation

机译:Tlx3作为Prrxl1转录和磷酸化调节剂的双重作用

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The proper establishment of the dorsal root ganglion/spinal cord nociceptive circuitry depends on a group of homeodomain transcription factors that includes Prrxl1, Brn3a and Tlx3. By the use of epistatic analysis, it was suggested that Tlx3 and Brn3a, which highly co-localize with Prrxl1 in these tissues, are required to maintain Prrxl1 expression. Here, we report two Tlx3-dependent transcriptional mechanisms acting on Prrxl1 alternative promoters, referred to as P3 and P1/P2 promoters. We demonstrate that (i) Tlx3 induces the transcriptional activity of the TATA-containing promoter P3 by directly binding to a bipartite DNA motif and (ii) it synergistically interacts with Prrxl1 by indirectly activating the Prrxl1 TATA-less promoters P1/P2 via the action of Brn3a. The Tlx3 N-terminal domain 1-38 was shown to have a major role on the overall Tlx3 transcriptional activity and the C-terminus domain (amino acids 256-291) to mediate the Tlx3 effect on promoters P1/P2. On the other hand, the 76-111 domain was shown to decrease Tlx3 activity on the TATA-promoter P3. In addition to its action on Prrxl1 alternative promoters, Tlx3 proved to have the ability to induce Prrxl1 phosphorylation. The Tlx3 domain responsible for Prrxl1 hyperphosphorylation was mapped and encompasses amino acid residues 76 to 111. Altogether, our results suggest that Tlx3 uses distinct mechanisms to tightly modulate Prrxl1 activity, either by controlling its transcriptional levels or by increasing Prrxl1 phosphorylation state.
机译:背根神经节/脊髓伤害感受电路的正确建立取决于一组同源域转录因子,包括Prrxl1,Brn3a和Tlx3。通过使用上位性分析,建议在这些组织中与Prrxl1高度共定位的Tlx3和Brn3a需要维持Prrxl1的表达。在这里,我们报告作用于Prrxl1替代启动子,称为P3和P1 / P2启动子的两个Tlx3依赖的转录机制。我们证明(i)Tlx3通过直接结合到二聚体DNA基序诱导含TATA的启动子P3的转录活性,并且(ii)通过作用间接激活Prrxl1不含TATA的启动子P1 / P2与Prrxl1协同相互作用Brn3a。 Tlx3 N末端结构域1-38在总体Tlx3转录活性和C末端结构域(氨基酸256-291)上具有重要作用,以介导Tlx3对启动子P1 / P2的作用。另一方面,显示76-111结构域降低了TATA启动子P3上的T1x3活性。除了对Prrxl1替代启动子起作用外,Tlx3还具有诱导Prrxl1磷酸化的能力。负责Prrxl1过度磷酸化的Tlx3结构域已定位,涵盖了氨基酸残基76至111。总之,我们的结果表明,Tlx3使用不同的机制通过控制其转录水平或增加Prrxl1的磷酸化状态来紧密调节Prrxl1的活性。

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