Cargando…

The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein

In homozygous rolling stone embryos, the fusion of myoblasts to syncytial myotubes is diminished. Nevertheless, the visceral mesoderm, the heart mesoderm, and few somatic muscles are properly formed. Thus, we postulate a central role of rolling stone for the fusion process within the somatic mesoder...

Descripción completa

Detalles Bibliográficos
Autores principales: Paululat, Achim, Goubeaud, Anette, Damm, Christine, Knirr, Stefan, Burchard, Susanne, Renkawitz-Pohl, Renate
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2138187/
https://www.ncbi.nlm.nih.gov/pubmed/9230076
_version_ 1782143504751788032
author Paululat, Achim
Goubeaud, Anette
Damm, Christine
Knirr, Stefan
Burchard, Susanne
Renkawitz-Pohl, Renate
author_facet Paululat, Achim
Goubeaud, Anette
Damm, Christine
Knirr, Stefan
Burchard, Susanne
Renkawitz-Pohl, Renate
author_sort Paululat, Achim
collection PubMed
description In homozygous rolling stone embryos, the fusion of myoblasts to syncytial myotubes is diminished. Nevertheless, the visceral mesoderm, the heart mesoderm, and few somatic muscles are properly formed. Thus, we postulate a central role of rolling stone for the fusion process within the somatic mesoderm. We have cloned the rolling stone gene, and the deduced protein sequence is in accordance with a transmembrane protein, which agrees with the enrichment of Rost in the membrane fraction of Drosophila embryos. No homologous genes have been described so far. rolling stone is expressed in the embryonic nervous system and cells of the somatic mesoderm, most notable in muscle founder cells. To elucidate the function of rolling stone for myoblast fusion, we applied a knock-out strategy. The expression of an antisense rolling stone transcript specifically within the mesoderm of wild-type embryos results in fusion defects of myoblasts, proving that the rolling stone expression in the mesoderm is responsible for the rolling stone phenotype. We suggest that rolling stone is a member of a group of genes that are necessary for the fusion process during myogenesis.
format Text
id pubmed-2138187
institution National Center for Biotechnology Information
language English
publishDate 1997
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-21381872008-05-01 The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein Paululat, Achim Goubeaud, Anette Damm, Christine Knirr, Stefan Burchard, Susanne Renkawitz-Pohl, Renate J Cell Biol Article In homozygous rolling stone embryos, the fusion of myoblasts to syncytial myotubes is diminished. Nevertheless, the visceral mesoderm, the heart mesoderm, and few somatic muscles are properly formed. Thus, we postulate a central role of rolling stone for the fusion process within the somatic mesoderm. We have cloned the rolling stone gene, and the deduced protein sequence is in accordance with a transmembrane protein, which agrees with the enrichment of Rost in the membrane fraction of Drosophila embryos. No homologous genes have been described so far. rolling stone is expressed in the embryonic nervous system and cells of the somatic mesoderm, most notable in muscle founder cells. To elucidate the function of rolling stone for myoblast fusion, we applied a knock-out strategy. The expression of an antisense rolling stone transcript specifically within the mesoderm of wild-type embryos results in fusion defects of myoblasts, proving that the rolling stone expression in the mesoderm is responsible for the rolling stone phenotype. We suggest that rolling stone is a member of a group of genes that are necessary for the fusion process during myogenesis. The Rockefeller University Press 1997-07-28 /pmc/articles/PMC2138187/ /pubmed/9230076 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Paululat, Achim
Goubeaud, Anette
Damm, Christine
Knirr, Stefan
Burchard, Susanne
Renkawitz-Pohl, Renate
The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title_full The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title_fullStr The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title_full_unstemmed The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title_short The Mesodermal Expression of rolling stone (rost) Is Essential for Myoblast Fusion in Drosophila and Encodes a Potential Transmembrane Protein
title_sort mesodermal expression of rolling stone (rost) is essential for myoblast fusion in drosophila and encodes a potential transmembrane protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2138187/
https://www.ncbi.nlm.nih.gov/pubmed/9230076
work_keys_str_mv AT paululatachim themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT goubeaudanette themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT dammchristine themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT knirrstefan themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT burchardsusanne themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT renkawitzpohlrenate themesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT paululatachim mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT goubeaudanette mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT dammchristine mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT knirrstefan mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT burchardsusanne mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein
AT renkawitzpohlrenate mesodermalexpressionofrollingstonerostisessentialformyoblastfusionindrosophilaandencodesapotentialtransmembraneprotein