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首页> 外文期刊>Mechanisms of Development >Developmental cooperation of leukemia inhibitory factor and insulin-like growth factor I in mice is tissue-specific and essential for lung maturation involving the transcription factors Sp3 and TTF-1
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Developmental cooperation of leukemia inhibitory factor and insulin-like growth factor I in mice is tissue-specific and essential for lung maturation involving the transcription factors Sp3 and TTF-1

机译:小鼠中白血病抑制因子和胰岛素样生长因子I的发育合作是组织特异性的,对于涉及转录因子Sp3和TTF-1的肺成熟至关重要

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摘要

The multifunctional proteins leukemia inhibitory factor (LIF) and insulin-like growth factor I (IGF-I) are expressed in overlapping patterns during development and, therefore, may act cooperatively. We show that mice doubly deficient in LIF and IGF-I all died at birth of apparent respiratory failure. Growth retardation, muscle hypoplasia and delayed ossification in IGF-I-deficient E18.5 mice were exacerbated by the absence of LIF. The transcription factor Sp3 was decreased in the skeleton of the double null mice. Pronounced depletion of olfactory bulb neurons, in contrast, was only IGF-I-dependent. The lungs displayed reduced air space in the IGF-I-deficient embryos and neonates, phenotype exacerbated in the double nulls, which showed abnormal epithelial cells and decreased Sp3 expression. In addition, the transcription factor TTF-1 and the surfactant protein B were lower in the lung of the double null neonates than in all other genotypes. LIF and IGF-I, thus, have cooperative and distinct tissue functions during development. Their essential role in bone ossification apparently involves Sp3, and in lung maturation Sp3 together with TTF-1.
机译:多功能蛋白白血病抑制因子(LIF)和胰岛素样生长因子I(IGF-1)在发育过程中以重叠模式表达,因此可能协同起作用。我们表明,双重缺乏LIF和IGF-I的小鼠都在出现明显呼吸衰竭时死亡。没有LIF会加剧IGF-I缺失E18.5小鼠的生长发育迟缓,肌肉发育不全和骨化延迟。在双无效小鼠的骨骼中转录因子Sp3降低。相反,嗅球神经元的明显耗竭仅依赖于IGF-I。肺在IGF-I缺陷型胚胎和新生儿中显示出减少的气隙,双空位加剧了表型,这表明异常的上皮细胞和Sp3表达降低。此外,双无效新生儿的肺部转录因子TTF-1和表面活性剂蛋白B低于所有其他基因型。因此,LIF和IGF-I在发育过程中具有协同和独特的组织功能。它们在骨骼骨化中的重要作用显然涉及Sp3,以及与TTF-1一起在肺成熟Sp3中。

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