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首页> 外文期刊>Respiratory Research >ROBO2 signaling in lung development regulates SOX2/SOX9 balance, branching morphogenesis and is dysregulated in nitrofen-induced congenital diaphragmatic hernia
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ROBO2 signaling in lung development regulates SOX2/SOX9 balance, branching morphogenesis and is dysregulated in nitrofen-induced congenital diaphragmatic hernia

机译:Robo2信号传导在肺部发射调节Sox2 / Sox9平衡,分枝形态发生,在硝苯诱导的先天性膈疝中进行了疑虑

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Abstract Background Characterized by abnormal lung growth or maturation, congenital diaphragmatic hernia (CDH) affects 1:3000 live births. Cellular studies report proximal (SOX2 ) and distal (SOX9 ) progenitor cells as key modulators of branching morphogenesis and epithelial differentiation, whereas transcriptome studies demonstrate ROBO/SLIT as potential therapeutic targets for diaphragm defect repair in CDH. In this study, we tested the hypothesis that (a) experimental-CDH could changes the expression profile of ROBO1, ROBO2, SOX2 and SOX9; and (b) ROBO1 or ROBO2 receptors are regulators of branching morphogenesis and SOX2/SOX9 balance. Methods The expression profile for receptors and epithelial progenitor markers were assessed by Western blot and immunohistochemistry in a nitrofen-induced CDH rat model. Immunohistochemistry signals by pulmonary structure were also quantified from embryonic-to-saccular stages in normal and hypoplastic lungs. Ex vivo lung explant cultures were harvested at E13.5, cultures during 4?days and treated with increasing doses of recombinant rat ROBO1 or human ROBO2 Fc Chimera proteins for ROBO1 and ROBO2 inhibition, respectively. The lung explants were analyzed morphometrically and?ROBO1, ROBO2, SOX2, SOX9, BMP4, and β-Catenin were quantified by Western blot. Results Experimental-CDH induces distinct expression profiles by pulmonary structure and developmental stage for both receptors (ROBO1 and ROBO2) and epithelial progenitor markers (SOX2 and SOX9) that provide evidence of the impairment of proximodistal patterning in experimental-CDH. Ex vivo functional studies showed unchanged branching morphogenesis after ROBO1 inhibition; increased fetal lung growth after ROBO2 inhibition in a mechanism-dependent on SOX2 depletion and overexpression of SOX9, non-phospho β-Catenin, and BMP4. Conclusions These studies provided evidence of receptors and epithelial progenitor cells which are severely affected by CDH-induction from embryonic-to-saccular stages and established the ROBO2 inhibition as promoter of branching morphogenesis through SOX2/SOX9?balance.
机译:抽象背景以异常的肺生长或成熟,先天性膈疝(CDH)影响1:3000活产。细胞研究报告近端(SOX2)和远端(SOX9)祖细胞作为分支形态发生和上皮分化的关键调节剂,而转录组研究表现出ROBO / SLIT作为CDH中隔膜缺损修复的潜在治疗靶标。在这项研究中,我们测试了(a)实验-CDH可能改变Robo1,Robo2,Sox2和Sox9的表达谱的假设; (b)ROBO1或ROBO2受体是分支形态发生和SOX2 / SOX9平衡的调节因子。方法对硝基诱导的CDH大鼠大鼠模型中的蛋白质印迹和免疫组织化学评估受体和上皮祖祖标志物的表达谱。通过肺部结构的免疫组织化学信号也从正常和Hypproplastic肺部的胚胎 - 椎间阶段量化。在E13.5,培养物中收获前体内肺癌培养物,分别在4℃的培养物中,并分别用增加剂量的重组大鼠ROBO1或人robo2 FC嵌合蛋白进行培养,用于ROBO1和ROBO2抑制。通过蛋白质印迹量化肺癌肺癌,并通过Western印迹定量rObo1,Robo2,Sox2,Sox9,Bmp4和β-catenin。结果实验-CDH通过肺结核(ROBO1和ROBO2)和上皮祖(SOX2和SOX9)的肺部结构和发育阶段诱导不同的表达型,这提供了实验CDH在实验CDH中的潜置障碍损伤的证据。在Robo1抑制后,前体内功能研究表明,支化后的分枝形态发生;在机构中抑制胎儿肺生长增加 - 依赖于SOX9,非磷酸β-catenin和BMP4的SOX2耗竭和过表达。结论这些研究提供了受体和上皮祖细胞的证据,该细胞受到CDH-诱导来自胚胎 - 椎体阶段的CDH-诱导,并通过SOX2 / SOX9将ROBO2抑制作为分支形态发生的启动子进行平衡。

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