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首页> 外文期刊>Mechanisms of Development >Glypican-3 modulates inhibitory Bmp2-Smad signaling to control renal development in vivo
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Glypican-3 modulates inhibitory Bmp2-Smad signaling to control renal development in vivo

机译:Glypican-3调节抑制性Bmp2-Smad信号传导以控制体内肾脏发育

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摘要

Renal branching morphogenesis, defined as growth and branching of the ureteric bud (UB), is a tightly regulated process controlled by growth factor-dependent tissue interactions. Previously, using in vitro models of branching morphogenesis, we demonstrated that BMP2 signals via its intracellular effectors, SMAD1 and SMAD4, to control UB cell proliferation and branching in a manner modulated by Glypican-3 (GPC3), a cell surface heparan sulfate proteoglycan. Here, we used loss-of-function genetic mouse models to investigate the functions of Bmp2 and Gpc3-Bmp2 interactions in vivo. Progressively greater increases in UB cell proliferation were observed in Bmp2+/-, Smad4+/-, and Bmp2+/-; Smad4+/- mice compared to Wt. This increased cell proliferation was accompanied by a significant increase in UB branching in Smad4+/- and Bmp2+/-;Smad4+/- mice compared to Wt. Reduction of Gpc3 gene dosage also increased UB cell proliferation, an effect that was enhanced in Gpc3+/-;Bmp2+/- mice to an extent greater than the sum of that observed in Gpc3+/- and Bmp2+/- mice. Reduction of both Gpc3 and Bmp2 gene dosage enhanced cell proliferation in the metanephric mesenchyme compared to Wt, an effect not observed in either Bmp2+/- or Gpc3+/- mice. Phosphorylation of SMAD1, a measure of SMAD1 activation, was progressively decreased in Gpc3+/- and Gpc3+/-;Bmp2+/- mice compared to Wt, suggesting that Gpc3 stimulates Bmp2-dependent SMAD signaling in vivo. These results demonstrate that BMP2-SMAD signaling, modulated by GPC3, inhibits renal branching morphogenesis in vivo.
机译:肾分支形态发生,定义为输尿管芽(UB)的生长和分支,是受生长因子依赖性组织相互作用控制的严格调控的过程。以前,使用分支形态发生的体外模型,我们证明了BMP2通过其细胞内效应物SMAD1和SMAD4信号来控制UB细胞的增殖和以Glypican-3(GPC3)(一种细胞表面硫酸乙酰肝素蛋白聚糖)调节的方式分支。在这里,我们使用功能丧失的遗传小鼠模型来研究体内Bmp2和Gpc3-Bmp2相互作用的功能。在Bmp2 +/-,Smad4 +/-和Bmp2 +/-中观察到UB细胞增殖逐渐增加。与Wt相比,Smad4 +/-小鼠。与Wt相比,Smad4 +/-和Bmp2 +/-; Smad4 +/-小鼠的这种细胞增殖增加伴随着UB分支的显着增加。 Gpc3基因剂量的减少也增加了UB细胞增殖,这种作用在Gpc3 +/-; Bmp2 +/-小鼠中得到了增强,其程度大于在Gpc3 +/-和Bmp2 +/-小鼠中观察到的总和。与Wt相比,减少Gpc3和Bmp2基因剂量均可增强后肾间充质细胞的增殖,这在Bmp2 +/-或Gpc3 +/-小鼠中均未观察到。与Wt相比,Gpc3 +/-和Gpc3 +/-; Bmp2 +/-小鼠中SMAD1的磷酸化(一种衡量SMAD1激活的作用)逐渐降低,表明Gpc3在体内刺激了依赖Bmp2的SMAD信号传导。这些结果表明,由GPC3调节的BMP2-SMAD信号传导在体内抑制肾分支形态发生。

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