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ncam1xenopus neuroectoderm [+] 

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Expression summary for ncam1

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Experiment Species Images Stages Anatomy Assay
Harland lab in situ screen Assay

Harland Lab
tropicalis
1 image
NF stage 18 neural plate in situ hybridization
van Grunsven LA et al. (2007) Assay

Paper
laevis
1 image
NF stage 14 neural tube, neuroectoderm in situ hybridization
Rogers CD et al. (2009) Assay

Paper
laevis
1 image
NF stage 17 anterior neural fold, neural tube, pre-chordal neural plate in situ hybridization
Woda JM et al. (2003) Assay

Paper
laevis
1 image
NF stage 17 to NF stage 18 neural plate in situ hybridization
Delaune E et al. (2005) Assay

Paper
laevis
2 images
NF stage 26 anterior neural tube, brain, eye, neural tube, posterior neural tube in situ hybridization
Wu CF et al. (2001) Assay

Paper
xenopus
1 image
NF stage 18 neural plate, neuroectoderm in situ hybridization
Ueno H et al. (2008) Assay

Paper
laevis
1 image
NF stage 16 neural plate in situ hybridization
Bardine N et al. (2009) Assay

Paper
laevis
2 images
NF stage 13 to NF stage 14 anterior neural fold, chordal neural plate, neural plate, neuroectoderm, pre-chordal neural plate in situ hybridization
Tazumi S et al. (2008) Assay

Paper
laevis
1 image
NF stage 29 and 30 brain, eye, forebrain, hindbrain, midbrain, [+] in situ hybridization
Garcia-Morales C et al. (2009) Assay

Paper
laevis
1 image
NF stage 17 neuroectoderm in situ hybridization


Paper
xenopus
1 image
NF stage 18 neural plate in situ hybridization


Paper
xenopus
1 image
NF stage 18 neural plate in situ hybridization


Paper
laevis
1 image
NF stage 14 to NF stage 18 anterior neural fold, neural plate, neural tube in situ hybridization
Autoregulation of canonical Wnt signaling controls midbrain development.


laevis
1 image
NF stage 29 and 30 midbrain immunohistochemistry
Intrinsic differences between the superficial and deep layers of the Xenopus ectoderm control primary neuronal differentiation.

Paper
xenopus
1 image
NF stage 13 to NF stage 21 neuroectoderm, sensorial layer of neurectoderm in situ hybridization
Multiple connexins contribute to intercellular communication in the Xenopus embryo.

Paper
laevis
1 image
NF stage 22 to NF stage 44 brain, eye, floor plate, lens, midbrain, [+] in situ hybridization
Gont LK et al. (1996) Assay


laevis
1 image
NF stage 39 brain, floor plate, hindbrain, spinal cord immunohistochemistry
Suzuki M et al. (2010) Assay

Paper
laevis
1 image
NF stage 15 to NF stage 16 neural plate, neuroectoderm in situ hybridization
Nitta KR et al. (2004) Assay

Paper
laevis
3 images
NF stage 25 to NF stage 32 brain, eye, forebrain, hindbrain, midbrain, [+] in situ hybridization
Xerl, a novel CNS-specific secretory protein, establishes the boundary between neural plate and neural crest.

Paper
laevis
1 image
NF stage 15 neural plate, neuroectoderm in situ hybridization
Stimulation of NeuroD activity by huntingtin and huntingtin-associated proteins HAP1 and MLK2.

Paper
laevis
1 image
NF stage 32 brain, spinal cord in situ hybridization
Positive and negative signals modulate formation of the Xenopus cement gland.

Paper
laevis
1 image
NF stage 26 anterior neural tube, brain, eye, neural tube, optic field, [+] in situ hybridization
Williams Syndrome Transcription Factor is critical for neural crest cell function in Xenopus laevis.

Paper
laevis
1 image
NF stage 21 to NF stage 35 and 36 eye, eye primordium, neural fold in situ hybridization
Math5 encodes a murine basic helix-loop-helix transcription factor expressed during early stages of retinal neurogenesis.


laevis
1 image
NF stage 41 eye, lens, photoreceptor layer, retina, retinal inner plexiform layer immunohistochemistry
Xenopus Zic3, a primary regulator both in neural and neural crest development.

Paper
laevis
1 image
NF stage 14 neuroectoderm in situ hybridization
A role for Syndecan-4 in neural induction involving ERK- and PKC-dependent pathways.

Paper
laevis
1 image
NF stage 19 neural plate, neuroectoderm in situ hybridization
Neogenin interacts with RGMa and netrin-1 to guide axons within the embryonic vertebrate forebrain.


tropicalis
1 image
NF stage 32 brain, forebrain, optic chiasm, telencephalon immunohistochemistry
Neogenin interacts with RGMa and netrin-1 to guide axons within the embryonic vertebrate forebrain.


laevis
1 image
NF stage 29 and 30 to NF stage 31 brain, forebrain, optic chiasm, optic tract, telencephalon immunohistochemistry
Neogenin interacts with RGMa and netrin-1 to guide axons within the embryonic vertebrate forebrain.


laevis
1 image
NF stage 32 brain, diencephalon, forebrain, optic chiasm, optic tract, [+] immunohistochemistry
Wilson NH and Key B (2006) Assay


tropicalis
2 images
NF stage 29 and 30 to NF stage 31 brain, diencephalon, forebrain, hindbrain, midbrain, [+] immunohistochemistry
Expression of GTP-binding protein gene drg during Xenopus laevis development.

Paper
laevis
1 image
NF stage 22 anterior neural tube, neural tube, optic vesicle, posterior neural tube in situ hybridization
Xenopus Nbx, a novel NK-1 related gene essential for neural crest formation.

Paper
laevis
1 image
NF stage 16 neuroectoderm in situ hybridization
Kurata T and Ueno N (2003) Assay

Paper
laevis
1 image
NF stage 16 neural plate in situ hybridization
Expression and putative role of neuropilin-1 in the early scaffold of axon tracts in embryonic Xenopus brain.


laevis
1 image
NF stage 32 brain, forebrain, midbrain immunohistochemistry
Expression and putative role of neuropilin-1 in the early scaffold of axon tracts in embryonic Xenopus brain.


laevis
1 image
NF stage 32 brain, forebrain, midbrain immunohistochemistry
Zac1 promotes a Müller glial cell fate and interferes with retinal ganglion cell differentiation in Xenopus retina.


laevis
1 image
NF stage 40 eye, retina, retinal inner plexiform layer, retinal outer plexiform layer immunohistochemistry
Smurf1 regulates neural patterning and folding in Xenopus embryos by antagonizing the BMP/Smad1 pathway.

Paper
laevis
1 image
NF stage 18 anterior neural fold, neural fold, neural plate, neuroectoderm in situ hybridization
Smurf1 regulates neural patterning and folding in Xenopus embryos by antagonizing the BMP/Smad1 pathway.

Paper
laevis
1 image
NF stage 14 neural plate, neuroectoderm in situ hybridization
The expression of XIF3 in undifferentiated anterior neuroectoderm, but not in primary neurons, is induced by the neuralizing...


laevis
1 image
NF stage 24 spinal cord immunohistochemistry
Xenopus Zic family and its role in neural and neural crest development.

Paper
laevis
1 image
NF stage 13 to NF stage 14 neural plate in situ hybridization
A truncated FGF receptor blocks neural induction by endogenous Xenopus inducers.


laevis
1 image
NF stage 29 and 30 brain, spinal cord immunohistochemistry
Expression sequences and distribution of two primary cell adhesion molecules during embryonic development of Xenopus laevis.

Paper
laevis
1 image
NF stage 39 eye, retina, retinal inner plexiform layer immunohistochemistry
Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorph...


laevis
1 image
NF stage 54 to NF stage 64 spinal cord immunohistochemistry
Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorph...


laevis
1 image
NF stage 64 optic nerve immunohistochemistry
Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorph...


laevis
1 image
NF stage 52 to NF stage 64 lens epithelium, olfactory organ immunohistochemistry
Retinoic acid modifies the pattern of cell differentiation in the central nervous system of neurula stage Xenopus embryos.

Paper
laevis
1 image
NF stage 35 and 36 forebrain, hindbrain, midbrain, spinal cord immunohistochemistry
Ruiz i Altaba A and Jessell TM (1991) Assay


laevis
1 image
NF stage 32 to NF stage 60 brain, forebrain, hindbrain, midbrain, midbrain-hindbrain boundary, [+] immunohistochemistry
XASH genes promote neurogenesis in Xenopus embryos.

Paper
laevis
1 image
NF stage 29 and 30 hindbrain, neural tube, spinal cord in situ hybridization
Misexpression of Polycomb-group proteins in Xenopus alters anterior neural development and represses neural target genes.

Paper
laevis
1 image
NF stage 19 to NF stage 26 brain, forebrain, hindbrain, midbrain, neural tube, [+] in situ hybridization
Interaction of ZFPIP with PBX1 is crucial for proper expression of neural genetic markers during Xenopus development.

Paper
laevis
1 image
NF stage 22 anterior neural tube, neural tube, optic vesicle, posterior neural tube in situ hybridization

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