Abstract
noggin is expressed in the Spemann organizer region of the Xenopus embryo and can promote dorsal cell fates within the mesoderm and neural development within the overlying ectoderm. Here, we show that noggin promotes ventral development in Drosophila, specifying ventral ectoderm and CNS in the absence of all endogenous ventral-specific zygotic gene expression. We utilize constitutively active forms of the dpp receptors to demonstrate that noggin blocks dpp signaling upstream of dpp receptor activation. These results suggest a mechanistic basis for the action of Spemann's organizer during Xenopus development and provide further support for the conservation of dorsal-ventral patterning mechanisms between arthropods and chordates.
Publication types
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Comparative Study
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Research Support, Non-U.S. Gov't
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Research Support, U.S. Gov't, P.H.S.
MeSH terms
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Activin Receptors
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Animals
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Base Sequence
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Bone Morphogenetic Proteins
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Carrier Proteins
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DNA Primers / chemistry
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Drosophila Proteins*
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Drosophila melanogaster / embryology*
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Ectoderm / cytology
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Embryonic Induction
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Epistasis, Genetic
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Female
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Humans
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Insect Hormones / physiology*
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Male
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Microinjections
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Molecular Sequence Data
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Morphogenesis
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Noggin Protein
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Protein Serine-Threonine Kinases / physiology*
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Proteins / pharmacology
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Proteins / physiology*
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RNA, Messenger / administration & dosage
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Receptors, Cell Surface / physiology*
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Receptors, Growth Factor / physiology
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Recombinant Proteins
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Signal Transduction
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Species Specificity
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Xenopus laevis / embryology*
Substances
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Activin Receptors
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Bone Morphogenetic Proteins
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Carrier Proteins
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DNA Primers
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Drosophila Proteins
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Insect Hormones
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Protein Serine-Threonine Kinases
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Proteins
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RNA, Messenger
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Receptors, Cell Surface
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Receptors, Growth Factor
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Recombinant Proteins
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Noggin Protein
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dpp protein, Drosophila
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tkv protein, Drosophila