Gianakopoulos Peter J, Skerjanc Ilona S
Department of Biochemistry, Medical Sciences Building, University of Western Ontario, London, Ontario N6A 5C1, Canada.
J Biol Chem. 2005 Jun 3;280(22):21022-8. doi: 10.1074/jbc.M502977200. Epub 2005 Mar 26.
Sonic Hedgehog (Shh) is a critical signaling factor for a variety of developmental pathways during embryogenesis, including the specification of left-right asymmetry in the heart. Mice that lack Hedgehog signaling show a delay in the induction of cardiomyogenesis, as indicated by a delayed expression of Nkx2-5. To further examine a role for Shh in cardiomyogenesis, clonal populations of P19 cells that stably express Shh, termed P19(Shh) cells, were isolated. In monolayer P19(Shh) cultures the Shh pathway was functional as shown by the up-regulation of Ptc1 and Gli1 expression, but no cardiac muscle markers were activated. However, Shh expression induced cardiomyogenesis following cellular aggregation, resulting in the expression of factors expressed in cardiac muscle including GATA-4, MEF2C, and Nkx2-5. Furthermore, aggregated P19 cell lines expressing Gli2 or Meox1 also up-regulated the expression of cardiac muscle factors, leading to cardiomyogenesis. Meox1 up-regulated the expression of Gli1 and Gli2 and, thus, can modify the Shh signaling pathway. Finally, Shh, Gli2, and Meox1 all up-regulated BMP-4 expression, implying that activation of the Hedgehog pathway can regulate bone morphogenetic protein signals. Taken together, we propose a model in which Shh, functioning via Gli1/2, can specify mesodermal cells into the cardiac muscle lineage.
音猬因子(Shh)是胚胎发育过程中多种发育途径的关键信号因子,包括心脏左右不对称性的特化。缺乏刺猬信号的小鼠表现出心肌发生诱导延迟,这可通过Nkx2-5表达延迟来表明。为了进一步研究Shh在心肌发生中的作用,分离出稳定表达Shh的P19细胞克隆群体,称为P19(Shh)细胞。在单层P19(Shh)培养物中,Shh信号通路是有功能的,如Ptc1和Gli1表达上调所示,但没有激活心肌标记物。然而,Shh表达在细胞聚集后诱导心肌发生,导致在心肌中表达的因子如GATA-4、MEF2C和Nkx2-5的表达。此外,表达Gli2或Meox1的聚集P19细胞系也上调了心肌因子的表达,导致心肌发生。Meox1上调Gli1和Gli2的表达,因此可以修饰Shh信号通路。最后,Shh、Gli2和Meox1均上调BMP-4表达,这意味着刺猬信号通路的激活可以调节骨形态发生蛋白信号。综上所述,我们提出了一个模型,其中Shh通过Gli1/2发挥作用,可以将中胚层细胞指定为心肌谱系。