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转化生长因子β控制1型肺泡上皮细胞可塑性和肺泡基质组基因转录。

TGFβ controls alveolar type 1 epithelial cell plasticity and alveolar matrisome gene transcription.

作者信息

Callaway Danielle A, Penkala Ian J, Zhou Su, Cardenas-Diaz Fabian, Babu Apoorva, Morley Michael P, Lopes Mariana, Garcia Benjamin A, Morrisey Edward E

出版信息

bioRxiv. 2023 May 10:2023.05.09.540035. doi: 10.1101/2023.05.09.540035.

Abstract

Premature birth disrupts normal lung development and places infants at risk for bronchopulmonary dysplasia (BPD), a disease increasing in incidence which disrupts lung health throughout the lifespan. The TGFβ superfamily has been implicated in BPD pathogenesis, however, what cell lineage it impacts remains unclear. We show that is critical for AT1 cell fate maintenance and function. Loss of in AT1 cells during late lung development leads to AT1-AT2 cell reprogramming and altered pulmonary architecture, which persists into adulthood. Restriction of fetal lung stretch and associated AT1 cell spreading through a model of oligohydramnios enhances AT1-AT2 reprogramming. Transcriptomic and proteomic analysis reveal the necessity of expression in AT1 cells for extracellular matrix production. Moreover, TGFβ signaling regulates integrin transcription to alter AT1 cell morphology, which further impacts ECM expression through changes in mechanotransduction. These data reveal the cell intrinsic necessity of TGFβ signaling in maintaining AT1 cell fate and reveal this cell lineage as a major orchestrator of the alveolar matrisome.

摘要

早产会扰乱正常的肺发育,使婴儿面临支气管肺发育不良(BPD)的风险,这种疾病的发病率正在上升,会在整个生命周期中损害肺部健康。TGFβ超家族与BPD的发病机制有关,然而,它影响的细胞谱系仍不清楚。我们发现[具体内容缺失]对于AT1细胞命运维持和功能至关重要。在肺发育后期,AT1细胞中[具体内容缺失]的缺失会导致AT1-AT2细胞重编程和肺结构改变,并持续到成年期。通过羊水过少模型限制胎儿肺扩张和相关的AT1细胞铺展会增强AT1-AT2重编程。转录组学和蛋白质组学分析揭示了AT1细胞中[具体内容缺失]表达对于细胞外基质产生的必要性。此外,TGFβ信号调节整合素转录以改变AT1细胞形态,进而通过机械转导的变化进一步影响细胞外基质表达。这些数据揭示了TGFβ信号在维持AT1细胞命运方面的细胞内在必要性,并揭示了这个细胞谱系是肺泡基质组的主要协调者。

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