首页> 外文期刊>Birth defects research, Part A. Clinical and molecular teratology >Unique spatial and cellular expression patterns of Hoxa5, Hoxb4, and Hoxb6 proteins in normal developing murine lung are modified in pulmonary hypoplasia.
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Unique spatial and cellular expression patterns of Hoxa5, Hoxb4, and Hoxb6 proteins in normal developing murine lung are modified in pulmonary hypoplasia.

机译:正常发育的鼠肺中Hoxa5,Hoxb4和Hoxb6蛋白的独特空间和细胞表达模式在肺发育不全中得到了修饰。

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BACKGROUND: Hox transcription factors modulate signaling pathways controlling organ morphogenesis and maintain cell fate and differentiation in adults. Retinoid signaling, key in regulating Hox expression, is altered in pulmonary hypoplasia. Information on pattern-specific expression of Hox proteins in normal lung development and in pulmonary hypoplasia is minimal. Our objective was to determine how pulmonary hypoplasia alters temporal, spatial, and cellular expression of Hoxa5, Hoxb4, and Hoxb6 proteins compared to normal lung development. METHODS: Temporal, spatial, and cellular Hoxa5, Hoxb4, and Hoxb6 expression was studied in normal (untreated) and nitrofen-induced hypoplastic (NT-PH) lungs from gestational day 13.5, 16, and 19 fetuses and neonates using Western blot and immunohistochemistry. RESULTS: Modification of protein levels and spatial and cellular Hox expression patterns in NT-PH lungs was consistent with delayed lung development. Distinct protein isoforms were detected for each Hox protein. Expression levels of the Hoxa5 and Hoxb6 protein isoforms changed with development and were altered further in NT-PH lungs. Compared to normal lungs, GD19 and neonatal NT-PH lungs had decreased Hoxb6 and increased Hoxa5 and Hoxb4. Hoxa5 cellular localization changed from mesenchyme to epithelia earlier in normal lungs. Hoxb4 was expressed in mesenchyme and epithelial cells throughout development. Hoxb6 remained mainly in mesenchymal cells around distal airways. CONCLUSIONS: Unique spatial and cellular expression of Hoxa5, Hoxb4, and Hoxb6 participates in branching morphogenesis and terminal sac formation. Altered Hox protein temporal and cellular balance of expression either contributes to pulmonary hypoplasia or functions as a compensatory mechanism attempting to correct abnormal lung development and maturation in this condition.
机译:背景:Hox转录因子调节信号通路控制成年人的器官形态,并维持成人的细胞命运和分化。在肺发育不全中,维甲酸信号是调节Hox表达的关键。在正常肺发育和肺发育不全中Hox蛋白的模式特异性表达的信息很少。我们的目标是确定与正常肺发育相比,肺发育不全如何改变Hoxa5,Hoxb4和Hoxb6蛋白的时间,空间和细胞表达。方法:采用蛋白质印迹和免疫组化技术,研究了妊娠(妊娠)13.5、16、19和19天胎儿和新生儿的正常(未经治疗)和硝基苯诱导的发育不良(NT-PH)肺中的时间,空间和细胞Hoxa5,Hoxb4和Hoxb6表达。 。结果:NT-PH肺中蛋白质水平以及空间和细胞Hox表达模式的改变与肺发育延迟一致。对于每种Hox蛋白,检测到不同的蛋白同工型。 Hoxa5和Hoxb6蛋白同工型的表达水平随发育而变化,并在NT-PH肺中进一步变化。与正常肺相比,GD19和新生儿NT-PH肺的Hoxb6减少,而Hoxa5和Hoxb4增加。在正常肺中,Hoxa5细胞的定位较早地从间充质变为上皮。 Hoxb4在整个发育过程中在间充质和上皮细胞中表达。 Hoxb6主要保留在远端气道周围的间充质细胞中。结论:Hoxa5,Hoxb4和Hoxb6的独特空间和细胞表达参与分支形态发生和终末囊形成。改变的Hox蛋白的时间和细胞表达平衡可能导致肺发育不全,或者起着补偿机制的作用,试图纠正这种情况下异常的肺发育和成熟。

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