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Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster

In Drosophila, formation of the cardiac extracellular matrix (ECM) starts during embryogenesis. Assembly and incorporation of structural proteins such as Collagen IV, Pericardin, and Laminin A, B1, and B2 into the cardiac ECM is critical to the maintenance of heart integrity and functionality and, t...

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Autores principales: Wilmes, Ariane C., Klinke, Nora, Rotstein, Barbara, Meyer, Heiko, Paululat, Achim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5936059/
https://www.ncbi.nlm.nih.gov/pubmed/29685999
http://dx.doi.org/10.1242/bio.030361
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author Wilmes, Ariane C.
Klinke, Nora
Rotstein, Barbara
Meyer, Heiko
Paululat, Achim
author_facet Wilmes, Ariane C.
Klinke, Nora
Rotstein, Barbara
Meyer, Heiko
Paululat, Achim
author_sort Wilmes, Ariane C.
collection PubMed
description In Drosophila, formation of the cardiac extracellular matrix (ECM) starts during embryogenesis. Assembly and incorporation of structural proteins such as Collagen IV, Pericardin, and Laminin A, B1, and B2 into the cardiac ECM is critical to the maintenance of heart integrity and functionality and, therefore, to longevity of the animal. The cardiac ECM connects the heart tube with the alary muscles; thus, the ECM contributes to a flexible positioning of the heart within the animal's body. Moreover, the cardiac ECM holds the larval pericardial nephrocytes in close proximity to the heart tube and the inflow tract, which is assumed to be critical to efficient haemolymph clearance. Mutations in either structural ECM constituents or ECM receptors cause breakdown of the ECM network upon ageing, with disconnection of the heart tube from alary muscles becoming apparent at larval stages. Finally, the heart becomes non-functional. Here, we characterised existing and new pericardin mutants and investigated biosynthesis, secretion, and assembly of Pericardin in matrices. We identified two new pericardin alleles, which turned out to be a null (pericardin(3-548)) and a hypomorphic allele (pericardin(3-21)). Both mutants could be rescued with a genomic duplication of a fosmid coding for the pericardin locus. Biochemical analysis revealed that Pericardin is highly glycosylated and forms redox-dependent multimers. Multimer formation is remarkably reduced in animals deficient for the prolyl-4 hydroxylase cluster at 75D3-4.
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spelling pubmed-59360592018-05-22 Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster Wilmes, Ariane C. Klinke, Nora Rotstein, Barbara Meyer, Heiko Paululat, Achim Biol Open Research Article In Drosophila, formation of the cardiac extracellular matrix (ECM) starts during embryogenesis. Assembly and incorporation of structural proteins such as Collagen IV, Pericardin, and Laminin A, B1, and B2 into the cardiac ECM is critical to the maintenance of heart integrity and functionality and, therefore, to longevity of the animal. The cardiac ECM connects the heart tube with the alary muscles; thus, the ECM contributes to a flexible positioning of the heart within the animal's body. Moreover, the cardiac ECM holds the larval pericardial nephrocytes in close proximity to the heart tube and the inflow tract, which is assumed to be critical to efficient haemolymph clearance. Mutations in either structural ECM constituents or ECM receptors cause breakdown of the ECM network upon ageing, with disconnection of the heart tube from alary muscles becoming apparent at larval stages. Finally, the heart becomes non-functional. Here, we characterised existing and new pericardin mutants and investigated biosynthesis, secretion, and assembly of Pericardin in matrices. We identified two new pericardin alleles, which turned out to be a null (pericardin(3-548)) and a hypomorphic allele (pericardin(3-21)). Both mutants could be rescued with a genomic duplication of a fosmid coding for the pericardin locus. Biochemical analysis revealed that Pericardin is highly glycosylated and forms redox-dependent multimers. Multimer formation is remarkably reduced in animals deficient for the prolyl-4 hydroxylase cluster at 75D3-4. The Company of Biologists Ltd 2018-04-15 /pmc/articles/PMC5936059/ /pubmed/29685999 http://dx.doi.org/10.1242/bio.030361 Text en © 2018. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Wilmes, Ariane C.
Klinke, Nora
Rotstein, Barbara
Meyer, Heiko
Paululat, Achim
Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title_full Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title_fullStr Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title_full_unstemmed Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title_short Biosynthesis and assembly of the Collagen IV-like protein Pericardin in Drosophila melanogaster
title_sort biosynthesis and assembly of the collagen iv-like protein pericardin in drosophila melanogaster
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5936059/
https://www.ncbi.nlm.nih.gov/pubmed/29685999
http://dx.doi.org/10.1242/bio.030361
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