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wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development

We report the molecular and functional characterization of a new α chain of laminin in Drosophila. The new laminin chain appears to be the Drosophila counterpart of both vertebrate α2 (also called merosin) and α1 chains, with a slightly higher degree of homology to α2, suggesting that this chain is...

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Autores principales: Martin, Doris, Zusman, Susan, Li, Xitong, Williams, Erin L., Khare, Narmada, DaRocha, Sol, Chiquet-Ehrismann, Ruth, Baumgartner, Stefan
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1999
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2148222/
https://www.ncbi.nlm.nih.gov/pubmed/10189378
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author Martin, Doris
Zusman, Susan
Li, Xitong
Williams, Erin L.
Khare, Narmada
DaRocha, Sol
Chiquet-Ehrismann, Ruth
Baumgartner, Stefan
author_facet Martin, Doris
Zusman, Susan
Li, Xitong
Williams, Erin L.
Khare, Narmada
DaRocha, Sol
Chiquet-Ehrismann, Ruth
Baumgartner, Stefan
author_sort Martin, Doris
collection PubMed
description We report the molecular and functional characterization of a new α chain of laminin in Drosophila. The new laminin chain appears to be the Drosophila counterpart of both vertebrate α2 (also called merosin) and α1 chains, with a slightly higher degree of homology to α2, suggesting that this chain is an ancestral version of both α1 and α2 chains. During embryogenesis, the protein is associated with basement membranes of the digestive system and muscle attachment sites, and during larval stage it is found in a specific pattern in wing and eye discs. The gene is assigned to a locus called wing blister (wb), which is essential for embryonic viability. Embryonic phenotypes include twisted germbands and fewer pericardial cells, resulting in gaps in the presumptive heart and tracheal trunks, and myotubes detached from their target muscle attachment sites. Most phenotypes are in common with those observed in Drosophila laminin α3, 5 mutant embryos and many are in common with those observed in integrin mutations. Adult phenotypes show blisters in the wings in viable allelic combinations, similar to phenotypes observed in integrin genes. Mutation analysis in the eye demonstrates a function in rhabdomere organization. In summary, this new laminin α chain is essential for embryonic viability and is involved in processes requiring cell migration and cell adhesion.
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spelling pubmed-21482222008-05-01 wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development Martin, Doris Zusman, Susan Li, Xitong Williams, Erin L. Khare, Narmada DaRocha, Sol Chiquet-Ehrismann, Ruth Baumgartner, Stefan J Cell Biol Regular Articles We report the molecular and functional characterization of a new α chain of laminin in Drosophila. The new laminin chain appears to be the Drosophila counterpart of both vertebrate α2 (also called merosin) and α1 chains, with a slightly higher degree of homology to α2, suggesting that this chain is an ancestral version of both α1 and α2 chains. During embryogenesis, the protein is associated with basement membranes of the digestive system and muscle attachment sites, and during larval stage it is found in a specific pattern in wing and eye discs. The gene is assigned to a locus called wing blister (wb), which is essential for embryonic viability. Embryonic phenotypes include twisted germbands and fewer pericardial cells, resulting in gaps in the presumptive heart and tracheal trunks, and myotubes detached from their target muscle attachment sites. Most phenotypes are in common with those observed in Drosophila laminin α3, 5 mutant embryos and many are in common with those observed in integrin mutations. Adult phenotypes show blisters in the wings in viable allelic combinations, similar to phenotypes observed in integrin genes. Mutation analysis in the eye demonstrates a function in rhabdomere organization. In summary, this new laminin α chain is essential for embryonic viability and is involved in processes requiring cell migration and cell adhesion. The Rockefeller University Press 1999-04-05 /pmc/articles/PMC2148222/ /pubmed/10189378 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 Regular Articles
Martin, Doris
Zusman, Susan
Li, Xitong
Williams, Erin L.
Khare, Narmada
DaRocha, Sol
Chiquet-Ehrismann, Ruth
Baumgartner, Stefan
wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title_full wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title_fullStr wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title_full_unstemmed wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title_short wing blister, A New Drosophila Laminin α Chain Required for Cell Adhesion and Migration during Embryonic and Imaginal Development
title_sort wing blister, a new drosophila laminin α chain required for cell adhesion and migration during embryonic and imaginal development
topic Regular Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2148222/
https://www.ncbi.nlm.nih.gov/pubmed/10189378
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