kr ppel样因子4是ATII细胞中的Stat3-Smad2调节因子,在肺发育和高氧诱导的肺损伤过程中决定ATII细胞的命运

J. Mohr, M. Koch, S. Danopoulos, Lena K. Ebert, N. Oikonomou, C. Vohlen, D. Hirani, D. A. Alam, B. Schermer, J. Dötsch, M. A. Alcázar
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(3) Overexpression (Klf4OE) and ablation of Klf4 (Klf4del; CRISPR/Cas9) in murine lung epithelial cells (MLE-12). Results: (1) Dual immunofluorescent staining determined Klf4 in ATII cells during late murine lung development and in epithelial cells in the human fetal lung. Reduced ATII markers after HYX were linked to reduced Klf4 expression and lung growth. (2) ATII-specific Klf4 ablation during late lung development reduced ATII cells in mice. (3) In MLE-12, HYX decreased Klf4 expression and cell survival. Klf4OE and Klf4del in MLE-12 induced apoptosis and decreased epithelial cell markers. Klf4OE aggravated HYX-related decreased proliferation, activated Smad2 and blocked Stat3 signaling. Inhibition of Smad2, using an inhibitor, activated Stat3. Klf4del activated Stat3 and inhibited Smad2. Conclusion: We identified a novel Klf4-Smad2-Stat3 axis cell homeostasis that HYX disrupts in ATII cells and in lungs of newborn mice, suggesting Klf4 as potential target regulating lung regeneration.","PeriodicalId":290970,"journal":{"name":"Lung and airway developmental biology","volume":"32 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-09-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Krüppel-like Factor 4 is a Stat3-Smad2 regulator in ATII cells determining ATII cell fate during lung development and hyperoxia-induced lung injury\",\"authors\":\"J. Mohr, M. Koch, S. Danopoulos, Lena K. Ebert, N. Oikonomou, C. Vohlen, D. Hirani, D. A. Alam, B. Schermer, J. Dötsch, M. A. 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引用次数: 1

摘要

背景:支气管肺发育不良(BPD)以肺泡增生和再生受损为特征。kruppel样因子4 (Klf4)是一种调节细胞稳态和多能性的转录因子,在人类和小鼠的肺发育过程中高度表达,并与肺生长停止有关。目的:研究(1)高氧诱导的肺损伤是否会降低小鼠ATII细胞中Klf4的表达;(2)如果ATII特异性Klf4缺失导致ATII细胞数量减少;(3) Klf4在体外ATII细胞中的作用。方法:(1)新生小鼠暴露于85% O2 (HYX)或室内空气(NOX)中。(2) Klf4在小鼠肺发育后期被诱导细胞特异性缺失。(3) Klf4过表达(Klf4OE)和消融(Klf4del);CRISPR/Cas9)在小鼠肺上皮细胞(MLE-12)中的表达。结果:(1)双免疫荧光染色检测了小鼠肺发育晚期ATII细胞和人胎儿肺上皮细胞中Klf4的表达。HYX后ATII标记物减少与Klf4表达减少和肺生长有关。(2)肺发育晚期ATII特异性Klf4消融可减少小鼠的ATII细胞。(3)在MLE-12中,HYX降低Klf4的表达和细胞存活率。MLE-12中的Klf4OE和Klf4del诱导细胞凋亡并降低上皮细胞标志物。Klf4OE加重了hyx相关的增殖下降,激活Smad2,阻断Stat3信号。使用抑制剂抑制Smad2,激活Stat3。Klf4del激活Stat3,抑制Smad2。结论:我们发现了一种新的Klf4- smad2 - stat3轴细胞稳态,HYX破坏了ATII细胞和新生小鼠肺的稳态,表明Klf4是调节肺再生的潜在靶点。
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Krüppel-like Factor 4 is a Stat3-Smad2 regulator in ATII cells determining ATII cell fate during lung development and hyperoxia-induced lung injury
Background: Bronchopulmonary dysplasia (BPD) is characterized by impaired alveolarization and regeneration. Kruppel-like factor 4 (Klf4), a transcription factor regulating cell homeostasis and pluripotency, is highly expressed in human and mice during lung development and linked to lung growth arrest. Aim: To study (1) if hyperoxia-induced lung injury reduces Klf4 in ATII cells in mice; (2) if ATII-specific loss of Klf4 depletes number of ATII cells; (3) the function of Klf4 in ATII cells in vitro. Methods: (1) Newborn mice were exposed to 85% O2 (HYX) or room air (NOX). (2) Cell-specific deletion of Klf4 was induced in mice during late lung development. (3) Overexpression (Klf4OE) and ablation of Klf4 (Klf4del; CRISPR/Cas9) in murine lung epithelial cells (MLE-12). Results: (1) Dual immunofluorescent staining determined Klf4 in ATII cells during late murine lung development and in epithelial cells in the human fetal lung. Reduced ATII markers after HYX were linked to reduced Klf4 expression and lung growth. (2) ATII-specific Klf4 ablation during late lung development reduced ATII cells in mice. (3) In MLE-12, HYX decreased Klf4 expression and cell survival. Klf4OE and Klf4del in MLE-12 induced apoptosis and decreased epithelial cell markers. Klf4OE aggravated HYX-related decreased proliferation, activated Smad2 and blocked Stat3 signaling. Inhibition of Smad2, using an inhibitor, activated Stat3. Klf4del activated Stat3 and inhibited Smad2. Conclusion: We identified a novel Klf4-Smad2-Stat3 axis cell homeostasis that HYX disrupts in ATII cells and in lungs of newborn mice, suggesting Klf4 as potential target regulating lung regeneration.
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