scholarly article | Q13442814 |
P356 | DOI | 10.1002/DVDY.10063 |
P698 | PubMed publication ID | 11891987 |
P50 | author | David Sassoon | Q42667418 |
P2093 | author name string | Robert S Krauss | |
Jong-Sun Kang | |||
Philip J Mulieri | |||
P2860 | cites work | The embryonic origins of avian cephalic and cervical muscles and associated connective tissues | Q71123637 |
Slit proteins bind Robo receptors and have an evolutionarily conserved role in repulsive axon guidance | Q22009125 | ||
BOC, an Ig superfamily member, associates with CDO to positively regulate myogenic differentiation | Q24292124 | ||
Deleted in Colorectal Cancer (DCC) encodes a netrin receptor | Q24313278 | ||
CDO, a robo-related cell surface protein that mediates myogenic differentiation | Q28646219 | ||
Determination and morphogenesis in myogenic progenitor cells: an experimental embryological approach. | Q33817741 | ||
Slit is the midline repellent for the robo receptor in Drosophila. | Q33856788 | ||
Cellular signaling by neural cell adhesion molecules of the immunoglobulin superfamily | Q33936720 | ||
IgCAMs: bidirectional signals underlying neurite growth. | Q34026305 | ||
Mutations affecting growth cone guidance in Drosophila: genes necessary for guidance toward or away from the midline | Q34362414 | ||
Vertebrate Craniofacial Development: The Relation between Ontogenetic Process and Morphological Outcome; pp. 190–207 | Q36928527 | ||
Detection of messenger RNA by in situ hybridization. | Q41587073 | ||
P433 | issue | 3 | |
P921 | main subject | embryogenesis | Q28962 |
P304 | page(s) | 379-388 | |
P577 | publication date | 2002-03-01 | |
P1433 | published in | Developmental Dynamics | Q59752 |
P1476 | title | Expression of the boc gene during murine embryogenesis | |
P478 | volume | 223 |
Q24292124 | BOC, an Ig superfamily member, associates with CDO to positively regulate myogenic differentiation |
Q47073196 | BOC, brother of CDO, is a dorsoventral axon-guidance molecule in the embryonic vertebrate brain |
Q28508434 | Boc is a receptor for sonic hedgehog in the guidance of commissural axons |
Q34990935 | Bocmodifies the holoprosencephaly spectrum ofCdomutant mice |
Q83285973 | Brother of CDO (BOC) expression in equine articular cartilage |
Q41172789 | Brother of cdo (umleitung) is cell-autonomously required for Hedgehog-mediated ventral CNS patterning in the zebrafish |
Q27330705 | Cdon Mutation and Fetal Ethanol Exposure Synergize to Produce Midline Signaling Defects and Holoprosencephaly Spectrum Disorders in Mice |
Q98899853 | Cdon mutation and fetal alcohol converge on Nodal signaling in a mouse model of holoprosencephaly |
Q33602821 | Ethanol itself is a holoprosencephaly-inducing teratogen |
Q38302705 | Gene expression analysis of the hedgehog signaling cascade in the chick midbrain and spinal cord |
Q42316991 | Genetic interactions between the hedgehog co-receptors Gas1 and Boc regulate cell proliferation during murine palatogenesis. |
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Q42285297 | Neogenin regulates sonic hedgehog pathway activity during digit patterning |
Q35630797 | Overweight in mice and enhanced adipogenesis in vitro are associated with lack of the hedgehog coreceptor boc. |
Q60954777 | Positive and negative regulation of Shh signalling in vertebrate retinal development |
Q24683397 | Promyogenic members of the Ig and cadherin families associate to positively regulate differentiation |
Q37297044 | Rescue of holoprosencephaly in fetal alcohol-exposed Cdon mutant mice by reduced gene dosage of Ptch1. |
Q36551610 | Sonic Hedgehog Expression in Corticofugal Projection Neurons Directs Cortical Microcircuit Formation |
Q58790346 | Sonic Hedgehog Signaling Rises to the Surface: Emerging Roles in Neocortical Development |
Q41585269 | Structural and functional analysis of intra-articular interzone tissue in axolotl salamanders |
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