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经典 Wnt 信号通路调控 P19 细胞中 Foxc1/2 的表达。

Canonical Wnt signaling regulates Foxc1/2 expression in P19 cells.

机构信息

Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, Ottawa, Ontario, Canada K1H 8M5.

出版信息

Differentiation. 2010 Jan;79(1):31-40. doi: 10.1016/j.diff.2009.08.008. Epub 2009 Sep 25.

Abstract

FOXC1 and FOXC2 are forkhead/winged-helix transcription factors expressed in paraxial mesoderm and somites. Emphasizing the importance of FOXC1/2 during embryonic development, double-knockout mice lacking the alleles for both Foxc1 and Foxc2 failed to form segmented somites and undergo myogenesis. The present study aims to determine upstream factors that regulate Foxc1/2 expression during the differentiation of P19 cells into skeletal muscle. Previous work had shown that dominant-negative forms of beta-catenin, Gli2, and Meox1 could inhibit distinct stages of skeletal myogenesis in P19 cells. In the presence of a dominant-negative beta-catenin fusion protein, Foxc1/2 transcripts were not upregulated and neither were markers of somitogenesis/myogenesis, including Meox1, Pax3 and MyoD. Conversely, inhibition of GSK3 by LiCl or overexpression of activated beta-catenin in aggregated P19 cells resulted in enhancement of Foxc1/2 expression, indicating that FOX transcription may be under the control of Wnt signaling. Supporting this hypothesis, beta-catenin bound to conserved regions upstream of Foxc1 during P19 cell differentiation and drove transcription from this region in a promoter assay. In addition, ectopic expression of a dominant-negative Meox1 or Gli2 resulted in decreased Foxc1/2 transcript levels, correlating with inhibition of skeletal myogenesis. Overexpression of Gli2 was also sufficient to upregulate Foxc1/2 transcript levels and induce skeletal myogenesis. In summary, Foxc1/2 expression is dependent on a complex interplay from various signaling inputs from the Wnt and Shh pathways during early stages of in vitro skeletal myogenesis.

摘要

FOXC1 和 FOXC2 是叉头/翼状螺旋转录因子,在轴旁中胚层和体节中表达。强调 FOXC1/2 在胚胎发育过程中的重要性,缺乏 Foxc1 和 Foxc2 等位基因的双敲除小鼠未能形成有节段的体节并进行肌发生。本研究旨在确定在 P19 细胞分化为骨骼肌过程中调节 Foxc1/2 表达的上游因素。先前的工作表明,β-连环蛋白、Gli2 和 Meox1 的显性负形式可以抑制 P19 细胞中骨骼肌发生的不同阶段。在显性负β-连环蛋白融合蛋白存在的情况下,Foxc1/2 转录物没有上调,也没有体节发生/肌发生的标志物,包括 Meox1、Pax3 和 MyoD。相反,用 LiCl 抑制 GSK3 或在聚集的 P19 细胞中过表达激活的β-连环蛋白导致 Foxc1/2 表达增强,表明 FOX 转录可能受 Wnt 信号的控制。支持这一假设,β-连环蛋白在 P19 细胞分化过程中结合到 Foxc1 的上游保守区域,并在启动子测定中驱动该区域的转录。此外,显性负 Meox1 或 Gli2 的异位表达导致 Foxc1/2 转录物水平降低,与抑制骨骼肌发生相关。Gli2 的过表达也足以上调 Foxc1/2 转录物水平并诱导骨骼肌发生。总之,Foxc1/2 的表达依赖于 Wnt 和 Shh 途径的各种信号输入在体外骨骼肌发生的早期阶段的复杂相互作用。

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