PLX073940

GSE135667: Col6a1-/- Mouse Lung

  • Organsim mouse
  • Type RNASEQ
  • Target gene
  • Project ARCHS4

Collagen 6 (COL6) is known for its role in a spectrum of congenital muscular dystrophies, which are often accompanied by respiratory dysfunction. However, little is known regarding the function of COL6 in the lung. We confirmed the presence of COL6 throughout the basement membrane region of mouse lung tissue. We studied lung structure and organization in a previously described Col6a1-/- mouse, which do not produce detectable COL6 in the lung. The Col6a1-/- mouse displayed multiple histopathological alveolar and airway abnormalities. The airspaces of Col6a1-/- lungs appeared simplified, with larger (29%, p<0.01) and fewer (31%, p<0.001) alveoli. These airspace abnormalities included a reduction in IsolectinB4+ alveolar capillaries and Sftpc+ ATII cells. Alterations in lung function consistent with these histopathological changes were evident. Col6a1-/- mice also displayed multiple airway changes including increased branching (59%, p<0.001), increased mucosal thickness (34%, p<0.001) and increased epithelial cell density (13%, p<0.001). Comprehensive transcriptome analysis revealed loss of COL6 is associated with reductions in integrin-paxillin-PI3K signaling in vivo. In vitro, COL6 promoted steady-state phospho-paxillin levels and reduced cell density (16-28%, p<0.05) at confluence. Inhibition of PI3K, or its downstream effectors, resulted in increased cell density to a level similar to that seen on matrices lacking COL6. SOURCE: Jared Mereness (jared_mereness@urmc.rochester.edu) - University of Rochester

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