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Hedgehog信号通路在胚胎发育、组织再生中发挥重要的作用,且与癌症发生发展密切相关. 其胞内调控组分Suppressor of Fused(SuFu)蛋白通过结合转录因子Gli(s),负调控该信号通路,但其作用的分子机制仍不甚清楚. 在本项研究中,以人SuFu作为诱饵蛋白,利用酵母双杂交技术成功地筛选到1个新的相互作用因子-蛋白酶体成熟蛋白(POMP). 通过免疫共沉淀、体外GST pull-down和免疫细胞化学实验验证其相互作用. 为了探究POMP与SuFu的相互作用对Hedgehog信号通路的影响,构建了POMP的过表达质粒和干扰质粒(miR-RNAi)以及转录因子Gli活性检测系统,即荧光素酶报告基因法,结果显示,过表达SuFu蛋白时POMP正调控Hedgehog信号通路,而下调POMP的表达则抑制Gli的活性. 该研究结果揭示了POMP新的生物学功能,为阐明Hedgehog信号通路的具体分子机制提供了新的线索.  相似文献   

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Hedgehog signaling induces cardiomyogenesis in P19 cells   总被引:7,自引:0,他引:7  
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.  相似文献   

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