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Sin3a regulates epithelial progenitor cell fate during lung development.


ABSTRACT: Mechanisms that regulate tissue-specific progenitors for maintenance and differentiation during development are poorly understood. Here, we demonstrate that the co-repressor protein Sin3a is crucial for lung endoderm development. Loss of Sin3a in mouse early foregut endoderm led to a specific and profound defect in lung development with lung buds failing to undergo branching morphogenesis and progressive atrophy of the proximal lung endoderm with complete epithelial loss at later stages of development. Consequently, neonatal pups died at birth due to respiratory insufficiency. Further analysis revealed that loss of Sin3a resulted in embryonic lung epithelial progenitor cells adopting a senescence-like state with permanent cell cycle arrest in G1 phase. This was mediated at least partially through upregulation of the cell cycle inhibitors Cdkn1a and Cdkn2c. At the same time, loss of endodermal Sin3a also disrupted cell differentiation of the mesoderm, suggesting aberrant epithelial-mesenchymal signaling. Together, these findings reveal that Sin3a is an essential regulator for early lung endoderm specification and differentiation.

SUBMITTER: Yao C 

PROVIDER: S-EPMC5536929 | biostudies-literature | 2017 Jul

REPOSITORIES: biostudies-literature

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Sin3a regulates epithelial progenitor cell fate during lung development.

Yao Changfu C   Carraro Gianni G   Konda Bindu B   Guan Xiangrong X   Mizuno Takako T   Chiba Norika N   Kostelny Matthew M   Kurkciyan Adrianne A   David Gregory G   McQualter Jonathan L JL   Stripp Barry R BR  

Development (Cambridge, England) 20170615 14


Mechanisms that regulate tissue-specific progenitors for maintenance and differentiation during development are poorly understood. Here, we demonstrate that the co-repressor protein Sin3a is crucial for lung endoderm development. Loss of Sin3a in mouse early foregut endoderm led to a specific and profound defect in lung development with lung buds failing to undergo branching morphogenesis and progressive atrophy of the proximal lung endoderm with complete epithelial loss at later stages of devel  ...[more]

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