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首页> 外文期刊>Molecular and Cellular Biology >Heart and Liver Defects and Reduced Transforming Growth Factor β2 Sensitivity in Transforming Growth Factor β Type III Receptor-Deficient Embryos
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Heart and Liver Defects and Reduced Transforming Growth Factor β2 Sensitivity in Transforming Growth Factor β Type III Receptor-Deficient Embryos

机译:心脏和肝脏缺陷以及转化生长因子βIII型受体缺陷型胚胎中转化生长因子β2的敏感性降低

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The type III transforming growth factor β (TGFβ) receptor (TβRIII) binds both TGFβ and inhibin with high affinity and modulates the association of these ligands with their signaling receptors. However, the significance of TβRIII signaling in vivo is not known. In this study, we have sought to determine the role of TβRIII during development. We identified the predominant expression sites of ΤβRIII mRNA as liver and heart during midgestation and have disrupted the murine TβRIII gene by homologous recombination. Beginning at embryonic day 13.5, mice with mutations in ΤβRIII developed lethal proliferative defects in heart and apoptosis in liver, indicating that TβRIII is required during murine somatic development. To assess the effects of the absence of TβRIII on the function of its ligands, primary fibroblasts were generated from TβRIII-null and wild-type embryos. Our results indicate that TβRIII deficiency differentially affects the activities of TGFβ ligands. Notably, TβRIII-null cells exhibited significantly reduced sensitivity to TGFβ2 in terms of growth inhibition, reporter gene activation, and Smad2 nuclear localization, effects not observed with other ligands. These data indicate that TβRIII is an important modulator of TGFβ2 function in embryonic fibroblasts and that reduced sensitivity to TGFβ2 may underlie aspects of the TβRIII mutant phenotype.
机译:III型转化生长因子β(TGFβ)受体(TβRIII)以高亲和力结合TGFβ和抑制素,并调节这些配体与其信号受体的结合。但是,体内TβRIII信号传导的意义尚不清楚。在这项研究中,我们试图确定TβRIII在发育过程中的作用。我们确定了中期妊娠期间TβRIIImRNA的主要表达位点是肝脏和心脏,并已通过同源重组破坏了鼠TβRIII基因。从胚胎第13.5天开始,在TTβRIII中发生突变的小鼠在心脏中产生致命的增殖缺陷,并在肝脏中凋亡,这表明在鼠体细胞发育过程中需要TβRIII。为了评估不存在TβRIII对其配体功能的影响,从TβRIII无效和野生型胚胎中产生了原代成纤维细胞。我们的结果表明,TβRIII缺乏会差异地影响TGFβ配体的活性。值得注意的是,在生长抑制,报道基因激活和Smad2核定位方面,TβRIII-null细胞对TGFβ2的敏感性显着降低,而其他配体则未观察到这种效应。这些数据表明,TβRIII是胚胎成纤维细胞中TGFβ2功能的重要调节剂,对TGFβ2的敏感性降低可能是TβRIII突变表型的基础。

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