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SRF Regulates Craniofacial Development through Selective Recruitment of MRTF Cofactors by PDGF Signaling

机译:SRF通过PDGF信号选择性招募MRTF辅助因子来调节颅面发育

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Receptor tyrosine kinase signaling is critical for mammalian craniofacial development, but the key downstream transcriptional effectors remain unknown. We demonstrate that serum response factor (SRF) is induced by both platelet-derived growth factor (PDGF) and fibroblast growth factor (FGF) signaling in mouse embryonic palatal mesenchyme cells and that Srf neural crest conditional mutants exhibit facial clefting accompanied by proliferation and migration defects. Srf and Pdgfra mutants interact genetically in craniofacial development, but Srf and Fgfri mutants do not. This signal specificity is recapitulated at the level of cofactor activation: while both PDGF and FGF target gene promoters show enriched genome-wide overlap with SRF ChlP-seq peaks, PDGF selectively activates a network of IvTRTF-dependent cytoskeletal genes. Collectively, our results identify a role for SRF in proliferation and migration during craniofacial development and delineate a mechanism of receptor tyrosine kinase specificity mediated through differential cofactor usage, leading to a PDGF-responsive SRF-driven transcriptional program in the midface.
机译:受体酪氨酸激酶信号转导对哺乳动物颅面发育至关重要,但关键的下游转录效应子仍然未知。我们证明了小鼠胚胎pa间充质细胞中血小板衍生的生长因子(PDGF)和成纤维细胞生长因子(FGF)信号均诱导了血清反应因子(SRF),并且Srf神经c条件突变体表现出伴随增殖和迁移的面部裂痕缺陷。 Srf和Pdgfra突变体在颅面发育过程中发生遗传相互作用,但Srf和Fgfri突变体却没有。这种信号特异性在辅因子激活水平上得到了概括:虽然PDGF和FGF靶基因启动子均显示出与SRF ChlP-seq峰富集的全基因组重叠,但PDGF选择性激活了IvTRTF依赖性细胞骨架基因的网络。总的来说,我们的结果确定了SRF在颅面发育过程中在增殖和迁移中的作用,并描绘了通过差异辅因子使用介导的受体酪氨酸激酶特异性机制,从而导致PDGF反应性SRF驱动的中间转录程序。

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