Redundancy and compensation in axon guidance: genetic analysis of the Drosophila Ptp10D/Ptp4E receptor tyrosine phosphatase subfamily.
about
A Drosophila-centric view of protein tyrosine phosphatasesCharacterization of PTPRG in knockdown and phosphatase-inactive mutant mice and substrate trapping analysis of PTPRG in mammalian cellsIdentification of ptpro as a novel target gene of Wnt signaling and its potential role as a receptor for WntProtein tyrosine phosphatase receptor type O regulates development and function of the sensory nervous system.In the absence of frazzled over-expression of Abelson tyrosine kinase disrupts commissure formation and causes axons to leave the embryonic CNS.The novel Smad protein Expansion regulates the receptor tyrosine kinase pathway to control Drosophila tracheal tube sizeNucleotide diversity inflation as a genome-wide response to experimental lifespan extension in Drosophila melanogaster.Phosphotyrosine phosphatase R3 receptors: Origin, evolution and structural diversificationInteractions between Type III receptor tyrosine phosphatases and growth factor receptor tyrosine kinases regulate tracheal tube formation in Drosophila.Protein tyrosine phosphatase receptor type O (Ptpro) regulates cerebellar formation during zebrafish development through modulating Fgf signaling.Retinal Axon Guidance Requires Integration of Eya and the Jak/Stat Pathway into Phosphotyrosine-Based Signaling Circuitries in DrosophilaThe cell surface receptor Tartan is a potential in vivo substrate for the receptor tyrosine phosphatase Ptp52F.Receptor tyrosine phosphatases control tracheal tube geometries through negative regulation of Egfr signaling.Discovery and functional prioritization of Parkinson's disease candidate genes from large-scale whole exome sequencing.R3 receptor tyrosine phosphatases: conserved regulators of receptor tyrosine kinase signaling and tubular organ development.Midgut-enriched receptor protein tyrosine phosphatase PTP52F is required for Drosophila development during larva-pupa transition.Interactions between a receptor tyrosine phosphatase and a cell surface ligand regulate axon guidance and glial-neuronal communication.Two receptor tyrosine phosphatases dictate the depth of axonal stabilizing layer in the visual system.
P2860
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P248
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P2860
Redundancy and compensation in axon guidance: genetic analysis of the Drosophila Ptp10D/Ptp4E receptor tyrosine phosphatase subfamily.
description
2008 nî lūn-bûn
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2008年の論文
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2008年学术文章
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2008年学术文章
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name
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@en
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@nl
type
label
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@en
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@nl
prefLabel
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@en
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@nl
P2093
P2860
P356
P1433
P1476
Redundancy and compensation in ...... yrosine phosphatase subfamily.
@en
P2093
Huong Nguyen
Sami Bahri
P2860
P2888
P356
10.1186/1749-8104-3-3
P577
2008-01-31T00:00:00Z
P5875
P6179
1023436606