International audienceAn important step in epithelial organ development is size maturation of the organ lumen to attain correct dimensions. Here we show that the regulated expression of Tenectin (Tnc) is critical to shape the Drosophila melanogaster hindgut tube. Tnc is a secreted protein that fills the embryonic hindgut lumen during tube diameter expansion. Inside the lumen, Tnc contributes to detectable O-Glycans and forms a dense striated matrix. Loss of tnc causes a narrow hindgut tube, while Tnc over-expression drives tube dilation in a dose-dependent manner. Cellular analyses show that luminal accumulation of Tnc causes an increase in inner and outer tube diameter, and cell flattening within the tube wall, similar to the effects of a ...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
<p>(A) <i>enGAL4</i> drives expression of <i>UAS-GFP</i> in the dorsal Li (bracket), as seen by labe...
An important step in epithelial organ development is size maturation of the organ lumen to attain co...
International audienceAn important step in epithelial organ development is size maturation of the or...
<div><p>An important step in epithelial organ development is size maturation of the organ lumen to a...
1567-133X (Print) Journal Article Research Support, Non-U.S. Gov'tDuring Drosophila embryonic develo...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
<p>(A) Comparison of Tnc from <i>D.melanogaster</i> (top) and predicted Tnc from <i>D.erecta</i> (mi...
SummaryEpithelial tubes are found in many vital organs and require uniform and correct tube diameter...
SummaryEpithelial tubes in developing organs, such as mammalian lungs and insect tracheae, need to e...
<p>(A) The distribution of <i>tnc</i> transcripts (left) and Tnc protein (right) is shown in the hin...
Networks of epithelial tubes, such as the vertebrate lung, kidney and vascular system, enable transp...
Tubes are a fundamental unit of organ design. Most of our major organs like the lung, kidney and vas...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
<p>(A) <i>enGAL4</i> drives expression of <i>UAS-GFP</i> in the dorsal Li (bracket), as seen by labe...
An important step in epithelial organ development is size maturation of the organ lumen to attain co...
International audienceAn important step in epithelial organ development is size maturation of the or...
<div><p>An important step in epithelial organ development is size maturation of the organ lumen to a...
1567-133X (Print) Journal Article Research Support, Non-U.S. Gov'tDuring Drosophila embryonic develo...
In nature, epithelial tubes are vital structures in organ design and are required for transport of g...
<p>(A) Comparison of Tnc from <i>D.melanogaster</i> (top) and predicted Tnc from <i>D.erecta</i> (mi...
SummaryEpithelial tubes are found in many vital organs and require uniform and correct tube diameter...
SummaryEpithelial tubes in developing organs, such as mammalian lungs and insect tracheae, need to e...
<p>(A) The distribution of <i>tnc</i> transcripts (left) and Tnc protein (right) is shown in the hin...
Networks of epithelial tubes, such as the vertebrate lung, kidney and vascular system, enable transp...
Tubes are a fundamental unit of organ design. Most of our major organs like the lung, kidney and vas...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
Biological tubes adopt a variety of shapes to carry out their functions. In addition to multicellula...
The control of the size of internal tubular organs, such as the lungs or vascular system, is critica...
<p>(A) <i>enGAL4</i> drives expression of <i>UAS-GFP</i> in the dorsal Li (bracket), as seen by labe...