Type IV collagens regulate BMP signalling in Drosophila

Dorsal–ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gra...

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Published inNature Vol. 455; no. 7209; pp. 72 - 77
Main Authors Wang, Xiaomeng, Harris, Robin E., Bayston, Laura J., Ashe, Hilary L.
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 04.09.2008
Nature Publishing
Nature Publishing Group
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Abstract Dorsal–ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved. Dorsal–ventral patterning: collagens and BMP signalling In both vertebrate and invertebrate embryos dorsal-ventral patterning is controlled by a concentration gradient of secreted signalling molecules called BMPs or bone morphogenetic proteins. Work in Drosophila now shows the extracellular matrix pays a part in regulating the Dpp morphogen gradient (Dpp is the Drosophila form of BMP). Type IV collagen binds to the Dpp ligand and regulates its signalling in the Drosophila embryo and ovary by sequestering Dpp. Human type IV collagen binds the analogous protein in humans, BMP-4, suggesting that this role of type IV collagens is widely conserved. This paper establishes a role of the extracellular matrix for regulating the BMP morphogen gradient responsible for dorsal–ventral patterning of vertebrate and invertebrate embryos. Type IV collagen binds to the Dpp ligand (the Drosophila form of BMP) and regulates its signalling in the Drosophila embryo and ovary by sequestering Dpp. Human type IV collagen binds the analogous protein in humans.
AbstractList Dorsal-ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved.Dorsal-ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved.
Dorsal-ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved. [PUBLICATION ABSTRACT]
Dorsal-ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved.
Dorsal–ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic protein (BMP) gradient. Although the Drosophila embryonic Decapentaplegic (Dpp) gradient has served as a model to understand how morphogen gradients are established, no role for the extracellular matrix has been previously described. Here we show that type IV collagen extracellular matrix proteins bind Dpp and regulate its signalling in both the Drosophila embryo and ovary. We provide evidence that the interaction between Dpp and type IV collagen augments Dpp signalling in the embryo by promoting gradient formation, yet it restricts the signalling range in the ovary through sequestration of the Dpp ligand. Together, these results identify a critical function of type IV collagens in modulating Dpp in the extracellular space during Drosophila development. On the basis of our findings that human type IV collagen binds BMP4, we predict that this role of type IV collagens will be conserved. Dorsal–ventral patterning: collagens and BMP signalling In both vertebrate and invertebrate embryos dorsal-ventral patterning is controlled by a concentration gradient of secreted signalling molecules called BMPs or bone morphogenetic proteins. Work in Drosophila now shows the extracellular matrix pays a part in regulating the Dpp morphogen gradient (Dpp is the Drosophila form of BMP). Type IV collagen binds to the Dpp ligand and regulates its signalling in the Drosophila embryo and ovary by sequestering Dpp. Human type IV collagen binds the analogous protein in humans, BMP-4, suggesting that this role of type IV collagens is widely conserved. This paper establishes a role of the extracellular matrix for regulating the BMP morphogen gradient responsible for dorsal–ventral patterning of vertebrate and invertebrate embryos. Type IV collagen binds to the Dpp ligand (the Drosophila form of BMP) and regulates its signalling in the Drosophila embryo and ovary by sequestering Dpp. Human type IV collagen binds the analogous protein in humans.
Audience Academic
Author Wang, Xiaomeng
Harris, Robin E.
Bayston, Laura J.
Ashe, Hilary L.
Author_xml – sequence: 1
  givenname: Xiaomeng
  surname: Wang
  fullname: Wang, Xiaomeng
  organization: Faculty of Life Sciences, The University of Manchester, Oxford Road, Manchester M13 9PT, UK
– sequence: 2
  givenname: Robin E.
  surname: Harris
  fullname: Harris, Robin E.
  organization: Faculty of Life Sciences, The University of Manchester, Oxford Road, Manchester M13 9PT, UK
– sequence: 3
  givenname: Laura J.
  surname: Bayston
  fullname: Bayston, Laura J.
  organization: Faculty of Life Sciences, The University of Manchester, Oxford Road, Manchester M13 9PT, UK
– sequence: 4
  givenname: Hilary L.
  surname: Ashe
  fullname: Ashe, Hilary L.
  email: hilary.ashe@manchester.ac.uk
  organization: Faculty of Life Sciences, The University of Manchester, Oxford Road, Manchester M13 9PT, UK
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https://www.ncbi.nlm.nih.gov/pubmed/18701888$$D View this record in MEDLINE/PubMed
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Issue 7209
Keywords Embryonic development
Insecta
Drosophila
Dorsoventral axis
Protein
Drosophilidae
Morphogenesis
Molecular signal
Arthropoda
Collagen
Extracellular matrix
Invertebrata
Diptera
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CC BY 4.0
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Snippet Dorsal–ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic...
Dorsal-ventral patterning in vertebrate and invertebrate embryos is mediated by a conserved system of secreted proteins that establishes a bone morphogenetic...
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SubjectTerms Amino acids
Animals
Biological and medical sciences
Body Patterning
Bone morphogenetic proteins
Bone Morphogenetic Proteins - genetics
Bone Morphogenetic Proteins - metabolism
Cell Count
Cells
Collagen
Collagen Type IV - genetics
Collagen Type IV - metabolism
Drosophila
Drosophila melanogaster - embryology
Drosophila melanogaster - genetics
Drosophila melanogaster - metabolism
Drosophila Proteins - genetics
Drosophila Proteins - metabolism
E coli
Embryology: invertebrates and vertebrates. Teratology
Embryos
Female
Fundamental and applied biological sciences. Psychology
Humanities and Social Sciences
Insects
Male
Methods
Molecular embryology
multidisciplinary
Ovary - cytology
Ovary - metabolism
Physiological aspects
Protein Binding
Proteins
Science
Science (multidisciplinary)
Signal Transduction
Signals and signaling
Transforming Growth Factor beta - genetics
Transforming Growth Factor beta - metabolism
Vertebrates
Title Type IV collagens regulate BMP signalling in Drosophila
URI https://link.springer.com/article/10.1038/nature07214
https://www.ncbi.nlm.nih.gov/pubmed/18701888
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Volume 455
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