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Crystal structure of an ephrin ectodomain
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instance of
scholarly article
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title
Crystal structure of an ephrin ectodomain
(English)
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main subject
crystal structure
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author name string
J Toth
series ordinal
1
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T Cutforth
series ordinal
2
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A D Gelinas
series ordinal
3
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K A Bethoney
series ordinal
4
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J Bard
series ordinal
5
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C J Harrison
series ordinal
6
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language of work or name
English
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publication date
July 2001
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number of pages
10
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inferred from page(s)
published in
Developmental Cell
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volume
1
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page(s)
83-92
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issue
1
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cites work
The cytoplasmic domain of the ligand ephrinB2 is required for vascular morphogenesis but not cranial neural crest migration.
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EphrinB ligands recruit GRIP family PDZ adaptor proteins into raft membrane microdomains
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Crystallography & NMR System: A New Software Suite for Macromolecular Structure Determination
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The CCP4 suite: programs for protein crystallography
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Characterization of the genes for mouse LERK-3/Ephrin-A3 (Epl3), mouse LERK-4/Ephrin-A4 (Epl4), and human LERK-6/Ephrin-A2 (EPLG6): conservation of intron/exon structure
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The ephrin VAB-2/EFN-1 functions in neuronal signaling to regulate epidermal morphogenesis in C. elegans
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EphB receptors interact with NMDA receptors and regulate excitatory synapse formation
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Ligands for EPH-related receptor tyrosine kinases that require membrane attachment or clustering for activity
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Compartmentalized signaling by GPI-anchored ephrin-A5 requires the Fyn tyrosine kinase to regulate cellular adhesion
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Characterization of the soybean early nodulin cDNA clone GmENOD55.
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Genetic analysis of ephrin-A2 and ephrin-A5 shows their requirement in multiple aspects of retinocollicular mapping.
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The ephrins and Eph receptors in neural development
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Distinct and overlapping expression patterns of ligands for Eph-related receptor tyrosine kinases during mouse embryogenesis.
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Genomic organization and expression properties of the VfENOD5 gene from broad bean (Vicia faba L.).
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Ephrins and their receptors: a repulsive topic?
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Eph receptors and ligands comprise two major specificity subclasses and are reciprocally compartmentalized during embryogenesis
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MtENOD16 and 20 are members of a family of phytocyanin-related early nodulins.
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The structure of a phytocyanin, the basic blue protein from cucumber, refined at 1.8 A resolution
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A missing link in cupredoxins: crystal structure of cucumber stellacyanin at 1.6 A resolution
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Regulated cleavage of a contact-mediated axon repellent
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Blocks database and its applications
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Crystal structure of the ligand-binding domain of the receptor tyrosine kinase EphB2
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A novel putative tyrosine kinase receptor encoded by the eph gene
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Protein structure comparison by alignment of distance matrices
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Regulation of repulsion versus adhesion by different splice forms of an Eph receptor
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Dictionary of protein secondary structure: pattern recognition of hydrogen-bonded and geometrical features
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MOLSCRIPT: a program to produce both detailed and schematic plots of protein structures
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Kinase-dependent and kinase-independent functions of EphA4 receptors in major axon tract formation in vivo.
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[27] Maximum-likelihood heavy-atom parameter refinement for multiple isomorphous replacement and multiwavelength anomalous diffraction methods.
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Ligand for EPH-related kinase (LERK) 7 is the preferred high affinity ligand for the HEK receptor
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Distinct subdomains of the EphA3 receptor mediate ligand binding and receptor dimerization
1 reference
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The 2.0 A crystal structure of a heterotrimeric G protein
1 reference
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The atomic structure of protein-protein recognition sites
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Control of cell behaviour by signalling through Eph receptors and ephrins.
1 reference
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Processing of X-ray diffraction data collected in oscillation mode
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wARP: improvement and extension of crystallographic phases by weighted averaging of multiple-refined dummy atomic models
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Solution structure of the receptor tyrosine kinase EphB2 SAM domain and identification of two distinct homotypic interaction sites
1 reference
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The crystal structure of an Eph receptor SAM domain reveals a mechanism for modular dimerization
1 reference
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Eph receptors discriminate specific ligand oligomers to determine alternative signaling complexes, attachment, and assembly responses
1 reference
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Extensive gene duplication in the early evolution of animals before the parazoan-eumetazoan split demonstrated by G proteins and protein tyrosine kinases from sponge and hydra.
1 reference
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Automated MAD and MIR structure solution
1 reference
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7 January 2021
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Oligomeric structure of the human EphB2 receptor SAM domain
1 reference
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PDZ proteins bind, cluster, and synaptically colocalize with Eph receptors and their ephrin ligands
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Multiple ephrins control cell organization in C. elegans using kinase-dependent and -independent functions of the VAB-1 Eph receptor
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Eph receptors and ephrins: regulators of guidance and assembly
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Identifiers
DOI
10.1016/S1534-5807(01)00002-8
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PubMed ID
11703926
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