生物
河马信号通路
细胞生物学
再生(生物学)
祖细胞
间充质干细胞
神经科学
效应器
干细胞
细胞命运测定
细胞分化
信号转导
再生医学
信号
祖细胞
模式生物
使负有责任或义务
气道
雅普1
细胞
机械生物学
肺
有机体
发育可塑性
移植
信号通路
形态发生
细胞信号
可塑性
作者
Rachel Warren,Stijn P. J. De Langhe
出处
期刊:Cells
[Multidisciplinary Digital Publishing Institute]
日期:2026-01-13
卷期号:15 (2): 143-143
标识
DOI:10.3390/cells15020143
摘要
The mammalian lung operates under a biological paradox, requiring architectural fragility for gas exchange while maintaining robust regenerative plasticity to withstand injury. The Hippo signaling pathway has emerged as a central "rheostat" in orchestrating these opposing needs, yet the distinct roles of its downstream effectors remain underappreciated. This review synthesizes recent genetic and mechanobiological advances to propose a "Tale of Two Effectors" model, arguing for the functional non-redundancy of YAP and TAZ. We posit that YAP functions to drive airway progenitor expansion, mechanical force generation, and maladaptive remodeling. Conversely, TAZ-regulated uniquely via transcriptional mechanisms and mechanotransduction-acts as an obligate driver of alveolar differentiation and adaptive repair through an NKX2-1 feed-forward loop. Furthermore, we introduce the "See-Saw" model of tissue fitness, where mesenchymal niche collapse releases the mechanical brake on the epithelium, triggering the bronchiolization characteristic of pulmonary fibrosis. Finally, we extend this framework to malignancy, illustrating how Small Cell Lung Cancer (SCLC) subtypes mirror these developmental and regenerative states. This integrated framework offers new therapeutic distinct targets for modulating tissue fitness and resolving fibrosis.
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