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成纤维细胞生长因子受体-1对体外心肌细胞发育至关重要。

Fibroblast growth factor receptor-1 is essential for in vitro cardiomyocyte development.

作者信息

Dell'Era Patrizia, Ronca Roberto, Coco Laura, Nicoli Stefania, Metra Marco, Presta Marco

机构信息

Unit of General Pathology and Immunology, Department of Biomedical Sciences and Biotechnology, University of Brescia, Brescia, Italy.

出版信息

Circ Res. 2003 Sep 5;93(5):414-20. doi: 10.1161/01.RES.0000089460.12061.E1. Epub 2003 Jul 31.

Abstract

Fibroblast growth factor (FGF)/FGF receptor (FGFR) signaling plays a crucial role in mesoderm formation and patterning. Heartless mutant studies in Drosophila suggest that FGFR1, among the different FGFRs, may play a role in cardiogenesis. However, fgfr1-/- mice die during gastrulation before heart formation. To establish the contribution of FGFR1 in cardiac development, we investigated the capacity of murine fgfr1+/- and fgfr1-/- embryonic stem (ES) cells to differentiate to cardiomyocytes in vitro. Clusters of pulsating cardiomyocytes were observed in >90% of 3-dimensional embryoid bodies (EBs) originated from fgfr1+/- ES cells at day 9 to 10 of differentiation. In contrast, 10% or less of fgfr1-/- EBs showed beating foci at day 16. Accordingly, fgfr1-/- EBs were characterized by impaired expression of early cardiac transcription factors Nkx2.5 and d-Hand and of late structural cardiac genes myosin heavy chain (MHC)-alpha, MHC-beta, and ventricular myosin light chain. Homozygous fgfr1 mutation resulted also in alterations of the expression of mesoderm-related early genes, including nodal, BMP2, BMP4, T(bra), and sonic hedgehog. Nevertheless, fgfr1+/- and fgfr1-/- EBs similarly express cardiogenic precursor, endothelial, hematopoietic, and skeletal muscle markers, indicating that fgfr1-null mutation exerts a selective effect on cardiomyocyte development in differentiating ES cells. Accordingly, inhibitors of FGFR signaling, including the FGFR1 tyrosine kinase inhibitor SU 5402, the MEK1/2 inhibitor U0126, and the protein kinase C inhibitor GF109 all prevented cardiomyocyte differentiation in fgfr1+/- EBs without affecting the expression of the hematopoietic/endothelial marker flk-1. In conclusion, the data point to a nonredundant role for FGFR1-mediated signaling in cardiomyocyte development.

摘要

成纤维细胞生长因子(FGF)/FGF受体(FGFR)信号通路在中胚层形成和模式化过程中起着至关重要的作用。果蝇中无心跳突变体研究表明,在不同的FGFR中,FGFR1可能在心脏发生中发挥作用。然而,fgfr1-/-小鼠在原肠胚形成期心脏形成之前就死亡了。为了确定FGFR1在心脏发育中的作用,我们研究了小鼠fgfr1+/-和fgfr1-/-胚胎干细胞(ES细胞)在体外分化为心肌细胞的能力。在分化第9至10天,超过90%源自fgfr1+/- ES细胞的三维胚状体(EBs)中观察到搏动的心肌细胞簇。相比之下,在第16天,只有10%或更少的fgfr1-/- EBs显示出搏动点。相应地,fgfr1-/- EBs的特征是早期心脏转录因子Nkx2.5和d-Hand以及晚期心脏结构基因肌球蛋白重链(MHC)-α、MHC-β和心室肌球蛋白轻链的表达受损。纯合子fgfr1突变还导致中胚层相关早期基因表达的改变,包括结节、BMP2、BMP4、T(bra)和音猬因子。然而,fgfr1+/-和fgfr1-/- EBs同样表达心脏发生前体、内皮、造血和骨骼肌标志物,这表明fgfr1基因缺失突变对分化的ES细胞中心肌细胞发育产生选择性影响。因此,FGFR信号通路抑制剂,包括FGFR1酪氨酸激酶抑制剂SU 5402、MEK1/2抑制剂U0126和蛋白激酶C抑制剂GF109,均能阻止fgfr1+/- EBs中心肌细胞的分化,而不影响造血/内皮标志物flk-1的表达。总之,这些数据表明FGFR1介导的信号通路在心肌细胞发育中具有非冗余作用。

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