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纤连蛋白-2 是小鼠气管小管发生过程中平滑肌细胞外基质稳态的关键介质。

Fibrillin-2 is a key mediator of smooth muscle extracellular matrix homeostasis during mouse tracheal tubulogenesis.

机构信息

Max Planck Institute for Heart and Lung Research, Dept of Developmental Genetics, Bad Nauheim, Germany.

W. Yin and D.Y.R. Stainier are joint senior authors.

出版信息

Eur Respir J. 2019 Mar 7;53(3). doi: 10.1183/13993003.00840-2018. Print 2019 Mar.

Abstract

Epithelial tubes, comprised of polarised epithelial cells around a lumen, are crucial for organ function. However, the molecular mechanisms underlying tube formation remain largely unknown. Here, we report on the function of fibrillin (FBN)2, an extracellular matrix (ECM) glycoprotein, as a critical regulator of tracheal tube formation.We performed a large-scale forward genetic screen in mouse to identify regulators of respiratory organ development and disease. We identified mutants which exhibit shorter and narrowed tracheas as well as defects in tracheal smooth muscle cell alignment and polarity.We found that FBN2 is essential for elastic fibre formation and Fibronectin accumulation around tracheal smooth muscle cells. These processes appear to be regulated at least in part through inhibition of p38-mediated upregulation of matrix metalloproteinases (MMPs), as pharmacological decrease of p38 phosphorylation or MMP activity partially attenuated the mutant tracheal phenotypes. Analysis of human tracheal tissues indicates that a decrease in ECM proteins, including FBN2 and Fibronectin, is associated with tracheomalacia.Our findings provide novel insights into the role of ECM homeostasis in mesenchymal cell polarisation during tracheal tubulogenesis.

摘要

上皮管由腔周围极化的上皮细胞组成,对于器官功能至关重要。然而,管形成的分子机制在很大程度上仍然未知。在这里,我们报告了细胞外基质(ECM)糖蛋白原纤维蛋白 2(FBN)2 作为气管形成的关键调节剂的功能。我们在小鼠中进行了大规模的正向遗传筛选,以鉴定呼吸器官发育和疾病的调节剂。我们鉴定了 FBN2 突变体,其表现为气管变短变窄,以及气管平滑肌细胞排列和极性缺陷。我们发现 FBN2 对于弹性纤维形成和纤维连接蛋白在气管平滑肌细胞周围的积累是必不可少的。这些过程似乎至少部分通过抑制 p38 介导的基质金属蛋白酶(MMP)的上调来调节,因为 p38 磷酸化或 MMP 活性的药理学降低部分减轻了 FBN2 突变体的气管表型。对人气管组织的分析表明,包括 FBN2 和纤维连接蛋白在内的 ECM 蛋白的减少与气管软化有关。我们的发现为 ECM 动态平衡在气管小管形成过程中对间充质细胞极化的作用提供了新的见解。

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