GNE is involved in the early development of skeletal and cardiac muscle.

UDP-N-acetylglucosamine 2 epimerase/N-acetylmannosamime kinase (GNE) is a bifunctional enzyme which catalyzes the two key sequential steps in the biosynthetic pathway of sialic acid, the most abundant terminal monosaccharide on glycoconjugates of eukaryotic cells. GNE knock out (GNE KO) mice are emb...

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Main Authors: Irit Milman Krentsis, Ilan Sela, Rachel Eiges, Véronique Blanchard, Markus Berger, Michal Becker Cohen, Stella Mitrani-Rosenbaum
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3123316?pdf=render
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spelling doaj-83b6f971172744a9bc172b7598ba33f12020-11-24T21:41:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0166e2138910.1371/journal.pone.0021389GNE is involved in the early development of skeletal and cardiac muscle.Irit Milman KrentsisIlan SelaRachel EigesVéronique BlanchardMarkus BergerMichal Becker CohenStella Mitrani-RosenbaumUDP-N-acetylglucosamine 2 epimerase/N-acetylmannosamime kinase (GNE) is a bifunctional enzyme which catalyzes the two key sequential steps in the biosynthetic pathway of sialic acid, the most abundant terminal monosaccharide on glycoconjugates of eukaryotic cells. GNE knock out (GNE KO) mice are embryonically lethal at day E8.5. Although the role of GNE in the sialic pathway has been well established as well as the importance of sialylation in many diverse biological pathways, less is known about the involvement of GNE in muscle development. To address this issue we have studied the role of GNE during in vitro embryogenesis by comparing the developmental profile in culture of embryonic stem cells (ES) from wild type and from GNE KO E3.5 mice embryos, during 45 days. Neuronal cells appeared rarely in GNE KO ES cultures and did not reach an advanced differentiated stage. Although primary cardiac cells appeared at the same time in both normal and GNE KO ES cultures, GNE KO cardiac cells degraded very soon and their beating capacity decayed rapidly. Furthermore very rare skeletal muscle committed cells were detected in the GNE KO ES cultures at any stage of differentiation, as assessed by analysis of the expression of either Pax7, MyoD and MyHC markers. Beyond the supporting evidence that GNE plays an important role in neuronal cell and brain development, these results show that GNE is strongly involved in cardiac tissue and skeletal muscle early survival and organization. These findings could open new avenues in the understanding of muscle function mechanisms in health and in disease.http://europepmc.org/articles/PMC3123316?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Irit Milman Krentsis
Ilan Sela
Rachel Eiges
Véronique Blanchard
Markus Berger
Michal Becker Cohen
Stella Mitrani-Rosenbaum
spellingShingle Irit Milman Krentsis
Ilan Sela
Rachel Eiges
Véronique Blanchard
Markus Berger
Michal Becker Cohen
Stella Mitrani-Rosenbaum
GNE is involved in the early development of skeletal and cardiac muscle.
PLoS ONE
author_facet Irit Milman Krentsis
Ilan Sela
Rachel Eiges
Véronique Blanchard
Markus Berger
Michal Becker Cohen
Stella Mitrani-Rosenbaum
author_sort Irit Milman Krentsis
title GNE is involved in the early development of skeletal and cardiac muscle.
title_short GNE is involved in the early development of skeletal and cardiac muscle.
title_full GNE is involved in the early development of skeletal and cardiac muscle.
title_fullStr GNE is involved in the early development of skeletal and cardiac muscle.
title_full_unstemmed GNE is involved in the early development of skeletal and cardiac muscle.
title_sort gne is involved in the early development of skeletal and cardiac muscle.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description UDP-N-acetylglucosamine 2 epimerase/N-acetylmannosamime kinase (GNE) is a bifunctional enzyme which catalyzes the two key sequential steps in the biosynthetic pathway of sialic acid, the most abundant terminal monosaccharide on glycoconjugates of eukaryotic cells. GNE knock out (GNE KO) mice are embryonically lethal at day E8.5. Although the role of GNE in the sialic pathway has been well established as well as the importance of sialylation in many diverse biological pathways, less is known about the involvement of GNE in muscle development. To address this issue we have studied the role of GNE during in vitro embryogenesis by comparing the developmental profile in culture of embryonic stem cells (ES) from wild type and from GNE KO E3.5 mice embryos, during 45 days. Neuronal cells appeared rarely in GNE KO ES cultures and did not reach an advanced differentiated stage. Although primary cardiac cells appeared at the same time in both normal and GNE KO ES cultures, GNE KO cardiac cells degraded very soon and their beating capacity decayed rapidly. Furthermore very rare skeletal muscle committed cells were detected in the GNE KO ES cultures at any stage of differentiation, as assessed by analysis of the expression of either Pax7, MyoD and MyHC markers. Beyond the supporting evidence that GNE plays an important role in neuronal cell and brain development, these results show that GNE is strongly involved in cardiac tissue and skeletal muscle early survival and organization. These findings could open new avenues in the understanding of muscle function mechanisms in health and in disease.
url http://europepmc.org/articles/PMC3123316?pdf=render
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