Summary of ssbd-repos-000139

SSBD:database
URL

Name
ssbd-repos-000139 (139-Kishimoto-TracheaDev)
URL
DOI
-

Title
Image data of trachea and esophagus formation in the mouse embryo
Description
-
Submited Date
-
Release Date
2024-11-25
Updated Date
-
License
Funding information
-
File formats
Data size
5.3 GB

Organism
Mus musculus
Strain
-
Cell Line
-
Genes
NA
Proteins
NA

GO Molecular Function (MF)
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GO Biological Process (BP)
branching morphogenesis of an epithelial tube
GO Cellular Component (CC)
nucleus, cytoskeleton
Study Type
NA
Imaging Methods
time lapse microscopy, scanning electron microscopy, confocal microscopy, multi-photon microscopy

Method Summary
-
Related paper(s)

Keishi Kishimoto, Masaru Tamura, Michiru Nishita, Yasuhiro Minami, Akira Yamaoka, Takaya Abe, Mayo Shigeta, Mitsuru Morimoto (2018) Synchronized mesenchymal cell polarization and differentiation shape the formation of the murine trachea and esophagus., Nature communications, Volume 9, Number 1, pp. 2816

Published in 2018 Jul 19 (Electronic publication in July 19, 2018, midnight )

(Abstract) Tube morphogenesis is essential for internal-organ development, yet the mechanisms regulating tube shape remain unknown. Here, we show that different mechanisms regulate the length and diameter of the murine trachea. First, we found that trachea development progresses via sequential elongation and expansion processes. This starts with a synchronized radial polarization of smooth muscle (SM) progenitor cells with inward Golgi-apparatus displacement regulates tube elongation, controlled by mesenchymal Wnt5a-Ror2 signaling. This radial polarization directs SM progenitor cell migration toward the epithelium, and the resulting subepithelial morphogenesis supports tube elongation to the anteroposterior axis. This radial polarization also regulates esophageal elongation. Subsequently, cartilage development helps expand the tube diameter, which drives epithelial-cell reshaping to determine the optimal lumen shape for efficient respiration. These findings suggest a strategy in which straight-organ tubulogenesis is driven by subepithelial cell polarization and ring cartilage development.
(MeSH Terms)

Contact(s)
Mitsuru Morimoto
Organization(s)
RIKEN , Center for Biosystems Dynamics Research , Laboratory for Lung Development
Image Data Contributors
Quantitative Data Contributors

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