Mechanism for generation of left isomerism in Ccdc40 mutant embryos.

Leftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry of the left-right axis. Coiled-coil domain containing-40 (Ccdc40) plays an evolutionarily conserved role in the assembly of motile cilia and establishment of the left-right axis. Approximately one-th...

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Main Authors: Kelsey F Sugrue, Irene E Zohn
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5300185?pdf=render
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spelling doaj-a52e7ef1ba0f4526ac764adae9732fee2020-11-24T22:08:21ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01122e017118010.1371/journal.pone.0171180Mechanism for generation of left isomerism in Ccdc40 mutant embryos.Kelsey F SugrueIrene E ZohnLeftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry of the left-right axis. Coiled-coil domain containing-40 (Ccdc40) plays an evolutionarily conserved role in the assembly of motile cilia and establishment of the left-right axis. Approximately one-third of Ccdc40lnks mutant embryos display situs defects and here we investigate the underlying mechanism. Ccdc40lnks mutants show delayed induction of markers of the left-lateral plate mesoderm (L-LPM) including Lefty1, Lefty2 and Nodal. Consistent with defective cilia motility compromising fluid flow across the node, initiation of asymmetric perinodal Cerberus like-2 (Cerl2) expression is delayed and then randomized. This is followed by delayed and then randomized asymmetric Nodal expression around the node. We propose a model to explain how left isomerism arises in a proportion of Ccdc40lnks mutants. We postulate that with defective motile cilia, Cerl2 expression remains symmetric and Nodal is antagonized equally on both sides of the node. This effectively reduces Nodal activation bilaterally, leading to reduced and delayed activation of Nodal and its antagonists in the LPM. This model is further supported by the failure to establish Nodal expression in the left-LPM with reduced Nodal gene dosage in Ccdc40lnks/lnks;NodalLacZ/+ mutants causing a predominance of right not left isomerism. Together these results suggest a model where cilia generated fluid flow in the node functions to ensure robust Nodal activation and a timely left-sided developmental program in the LPM.http://europepmc.org/articles/PMC5300185?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kelsey F Sugrue
Irene E Zohn
spellingShingle Kelsey F Sugrue
Irene E Zohn
Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
PLoS ONE
author_facet Kelsey F Sugrue
Irene E Zohn
author_sort Kelsey F Sugrue
title Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
title_short Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
title_full Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
title_fullStr Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
title_full_unstemmed Mechanism for generation of left isomerism in Ccdc40 mutant embryos.
title_sort mechanism for generation of left isomerism in ccdc40 mutant embryos.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Leftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry of the left-right axis. Coiled-coil domain containing-40 (Ccdc40) plays an evolutionarily conserved role in the assembly of motile cilia and establishment of the left-right axis. Approximately one-third of Ccdc40lnks mutant embryos display situs defects and here we investigate the underlying mechanism. Ccdc40lnks mutants show delayed induction of markers of the left-lateral plate mesoderm (L-LPM) including Lefty1, Lefty2 and Nodal. Consistent with defective cilia motility compromising fluid flow across the node, initiation of asymmetric perinodal Cerberus like-2 (Cerl2) expression is delayed and then randomized. This is followed by delayed and then randomized asymmetric Nodal expression around the node. We propose a model to explain how left isomerism arises in a proportion of Ccdc40lnks mutants. We postulate that with defective motile cilia, Cerl2 expression remains symmetric and Nodal is antagonized equally on both sides of the node. This effectively reduces Nodal activation bilaterally, leading to reduced and delayed activation of Nodal and its antagonists in the LPM. This model is further supported by the failure to establish Nodal expression in the left-LPM with reduced Nodal gene dosage in Ccdc40lnks/lnks;NodalLacZ/+ mutants causing a predominance of right not left isomerism. Together these results suggest a model where cilia generated fluid flow in the node functions to ensure robust Nodal activation and a timely left-sided developmental program in the LPM.
url http://europepmc.org/articles/PMC5300185?pdf=render
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