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转化生长因子β3基因敲除突变不会消除糖皮质激素在体内对胎儿肺成熟的作用。

TGF-beta3-null mutation does not abrogate fetal lung maturation in vivo by glucocorticoids.

作者信息

Shi W, Heisterkamp N, Groffen J, Zhao J, Warburton D, Kaartinen V

机构信息

Developmental Biology Program, Childrens Hospital Los Angeles and University of Southern California School of Medicine, Los Angeles 90027, California.

出版信息

Am J Physiol. 1999 Dec;277(6):L1205-13. doi: 10.1152/ajplung.1999.277.6.L1205.

Abstract

Newborn transforming growth factor (TGF)-beta3-null mutant mice exhibit defects of palatogenesis and pulmonary development. Glucocorticoids, which play a central role in fetal lung maturation, have been postulated to mediate their stimulatory effects on tropoelastin mRNA expression through TGF-beta3 in cultured lung fibroblasts. In the present study, we analyzed the abnormally developed lungs in TGF-beta3-null mutant mice and compared the effects of glucocorticoids on gene expression and lung morphology between TGF-beta3 knockout and wild-type mice. Lungs of TGF-beta3-null mutant mice on embryonic day 18.5 did not form normal saccular structures and had a thick mesenchyme between terminal air spaces. Moreover, the number of surfactant protein C-positive cells was decreased in TGF-beta3-null mutant lungs. Interestingly, glucocorticoids were able to promote lung maturation and increased expression of both tropoelastin and fibronectin but decreased the relative number of surfactant protein C-positive cells in fetal lungs of both genotypes. This finding provides direct evidence that glucocorticoid signaling in the lung can use alternative pathways and can exert its effect without the presence of TGF-beta3.

摘要

新生转化生长因子(TGF)-β3基因敲除突变小鼠表现出腭裂形成和肺发育缺陷。糖皮质激素在胎儿肺成熟过程中起核心作用,据推测其通过TGF-β3在培养的肺成纤维细胞中介导对原弹性蛋白mRNA表达的刺激作用。在本研究中,我们分析了TGF-β3基因敲除突变小鼠中发育异常的肺,并比较了糖皮质激素对TGF-β3基因敲除小鼠和野生型小鼠基因表达及肺形态的影响。在胚胎第18.5天,TGF-β3基因敲除突变小鼠的肺未形成正常的囊状结构,终末气腔之间有增厚的间充质。此外,TGF-β3基因敲除突变小鼠肺中表面活性蛋白C阳性细胞数量减少。有趣的是,糖皮质激素能够促进两种基因型胎儿肺的成熟,增加原弹性蛋白和纤连蛋白的表达,但减少表面活性蛋白C阳性细胞的相对数量。这一发现提供了直接证据,表明肺中的糖皮质激素信号传导可以利用替代途径,并且在没有TGF-β3的情况下也能发挥作用。

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