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首页> 外文期刊>The Biochemical Journal >Ser(119) phosphorylation modulates the activity and conformation of PRRXL1, a homeodomain transcription factor
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Ser(119) phosphorylation modulates the activity and conformation of PRRXL1, a homeodomain transcription factor

机译:Ser(119)磷酸化调节同源域转录因子PRRXL1的活性和构象

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PRRXL1 [paired related homeobox-like 1; also known as DRG11 (dorsal root ganglia 11)] is a paired-like homeodomain transcription factor expressed in DRG and dSC (dorsal spinal cord) nociceptive neurons. PRRXL1 is crucial for the establishment and maintenance of nociceptive circuitry, as Prrxl1(-/-) mice present neuronal loss, reduced pain sensitivity and failure to thrive. In the present study, we show that PRRXL1 is highly phosphorylated in vivo, and that its multiple band pattern on electrophoretic analysis is the result of different phosphorylation states. PRRXL1 phosphorylation appears to be differentially regulated along the dSC and DRG development and it is mapped to two functional domains. One region comprises amino acids 107-143, whereas the other one encompasses amino acids 227-263 and displays repressor activity. Using an immunoprecipitation MS approach, two phosphorylation sites were identified, Ser(119) and Ser(238). Phosphorylation at Ser(119) is shown to be determinant for PRRXL1 conformation and transcriptional activity. Ser(119) phosphorylation is thus proposed as a mechanism for regulating PRRXL1 function and conformation during nociceptive system development.
机译:PRRXL1 [配对的相关同源异型盒1;也称为DRG11(背根神经节11)]是在DRG和dSC(背脊髓)伤害性神经元中表达的成对的同源域转录因子。 PRRXL1对于伤害感受电路的建立和维持至关重要,因为Prrxl(-/-)小鼠表现出神经元丢失,疼痛敏感性降低和ive壮成长。在本研究中,我们显示PRRXL1在体内被高度磷酸化,并且其在电泳分析中的多谱带模式是不同磷酸化状态的结果。 PRRXL1的磷酸化似乎在dSC和DRG的发育过程中受到差异调节,并且它被定位到两个功能域。一个区域包含氨基酸107-143,而另一区域包含氨基酸227-263,并显示阻遏物活性。使用免疫沉淀MS方法,鉴定了两个磷酸化位点,Ser(119)和Ser(238)。 Ser(119)处的磷酸化被证明是PRRRL1构象和转录活性的决定因素。因此,Ser(119)磷酸化被认为是在伤害性系统发育过程中调节PRRXL1功能和构象的机制。

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