Mosimann Christian, Hausmann George, Basler Konrad
National Research Center Frontiers in Genetics, Institut für Molekularbiologie, Universität Zürich, Zürich, Switzerland.
Mech Dev. 2009 May-Jun;126(5-6):394-405. doi: 10.1016/j.mod.2009.02.002. Epub 2009 Feb 11.
The Hedgehog (Hh) pathway, an evolutionarily conserved key regulator of embryonic patterning and tissue homeostasis, controls its target genes by managing the processing and activities of the Gli/Ci transcription factors. Little is known about the nuclear co-factors the Gli/Ci proteins recruit, and how they mechanistically control Hh target genes. Here, we provide evidence for the involvement of Parafibromin/Hyx as a positive component in Hh signaling. We found that hyx RNAi impaired Hh pathway activity in Drosophila cell culture. Consistent with an evolutionarily conserved function in Hh signaling, RNAi-mediated knockdown of Parafibromin in mammalian cell culture experiments diminished the transcriptional activity of Gli1 and Gli2. In vivo, in Drosophila, genetic impairment of hyx decreased the expression of the high-threshold Hh target gene knot/collier. Conversely, hyx overexpression ameliorated the inhibitory activity of Ptc and Ci(75) misexpression during Drosophila wing development. We subsequently found that Parafibromin can form a complex with all three Glis, and provide evidence that Parafibromin/Hyx directly binds Region 1, the Su(fu) interaction domain, in the N-terminus of all Glis and Ci. Taken together, our results suggest a target gene-selective involvement of the PAF1 complex in Hh signaling via the Parafibromin/Hyx-mediated recruitment to Gli/Ci.
刺猬(Hh)信号通路是胚胎模式形成和组织稳态的一个进化保守的关键调节因子,它通过调控Gli/Ci转录因子的加工和活性来控制其靶基因。目前对于Gli/Ci蛋白招募的核辅助因子以及它们如何从机制上控制Hh靶基因知之甚少。在此,我们提供证据表明副纤维蛋白/ Hyx作为一个正向组分参与Hh信号传导。我们发现hyx RNA干扰在果蝇细胞培养中损害了Hh信号通路活性。与Hh信号传导中进化保守的功能一致,在哺乳动物细胞培养实验中,RNA干扰介导的副纤维蛋白敲低降低了Gli1和Gli2的转录活性。在果蝇体内,hyx的基因损伤降低了高阈值Hh靶基因knot/collier的表达。相反,在果蝇翅膀发育过程中,hyx过表达改善了Ptc的抑制活性以及Ci(75)错表达的影响。我们随后发现副纤维蛋白可以与所有三种Gli蛋白形成复合物,并提供证据表明副纤维蛋白/ Hyx直接结合所有Gli和Ci蛋白N端的区域1,即与Su(fu)相互作用的结构域。综上所述,我们的结果表明PAF1复合物通过副纤维蛋白/ Hyx介导招募到Gli/Ci,从而以靶基因选择性的方式参与Hh信号传导。