Type |
Details |
Score |
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2014-02-07 |
Strength: |
Absent |
Sex: |
Female |
Emaps: |
EMAPS:2760523 |
|
Stage: |
TS23 |
Assay Id: |
MGI:5540094 |
Age: |
embryonic day 15.5 |
Image: |
GUDMAP:6686 |
|
Specimen Label: |
GUDMAP:6686 |
Detected: |
false |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2004-12-03 |
Strength: |
Absent |
Sex: |
Not Specified |
Emaps: |
EMAPS:3280927 |
|
Stage: |
TS27 |
Assay Id: |
MGI:3508585 |
Age: |
postnatal newborn |
Image: |
2 |
Note: |
The tissue was olfactory epithelium and/or bulb. |
Specimen Label: |
2 |
Detected: |
false |
Specimen Num: |
2 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3615782 |
Assay Type: |
RNA in situ |
Annotation Date: |
2006-03-27 |
Strength: |
Present |
Sex: |
Not Specified |
Emaps: |
EMAPS:3280927 |
Pattern: |
Not Specified |
Stage: |
TS27 |
Assay Id: |
MGI:3617754 |
Age: |
postnatal day 0 |
Image: |
P0 |
|
Specimen Label: |
P0 |
Detected: |
true |
Specimen Num: |
2 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2004-12-03 |
Strength: |
Absent |
Sex: |
Not Specified |
Emaps: |
EMAPS:3267921 |
|
Stage: |
TS21 |
Assay Id: |
MGI:3508585 |
Age: |
embryonic day 13.5 |
Image: |
1 |
|
Specimen Label: |
1 |
Detected: |
false |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2004-12-03 |
Strength: |
Absent |
Sex: |
Not Specified |
Emaps: |
EMAPS:3267927 |
|
Stage: |
TS27 |
Assay Id: |
MGI:3508585 |
Age: |
postnatal newborn |
Image: |
2 |
|
Specimen Label: |
2 |
Detected: |
false |
Specimen Num: |
2 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3615782 |
Assay Type: |
RNA in situ |
Annotation Date: |
2006-03-27 |
Strength: |
Present |
Sex: |
Not Specified |
Emaps: |
EMAPS:3267921 |
Pattern: |
Not Specified |
Stage: |
TS21 |
Assay Id: |
MGI:3617754 |
Age: |
embryonic day 13.5 |
Image: |
E13.5 |
|
Specimen Label: |
E13.5 |
Detected: |
true |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2014-02-07 |
Strength: |
Absent |
Sex: |
Female |
Emaps: |
EMAPS:2852723 |
|
Stage: |
TS23 |
Assay Id: |
MGI:5540094 |
Age: |
embryonic day 15.5 |
Image: |
GUDMAP:6686 |
|
Specimen Label: |
GUDMAP:6686 |
Detected: |
false |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2014-02-07 |
Strength: |
Present |
Sex: |
Female |
Emaps: |
EMAPS:2874723 |
Pattern: |
Not Specified |
Stage: |
TS23 |
Assay Id: |
MGI:5540094 |
Age: |
embryonic day 15.5 |
Image: |
GUDMAP:6686 |
|
Specimen Label: |
GUDMAP:6686 |
Detected: |
true |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2004-12-03 |
Strength: |
Absent |
Sex: |
Not Specified |
Emaps: |
EMAPS:1757721 |
|
Stage: |
TS21 |
Assay Id: |
MGI:3508585 |
Age: |
embryonic day 13.5 |
Image: |
1 |
|
Specimen Label: |
1 |
Detected: |
false |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2004-12-03 |
Strength: |
Absent |
Sex: |
Not Specified |
Emaps: |
EMAPS:1757727 |
|
Stage: |
TS27 |
Assay Id: |
MGI:3508585 |
Age: |
postnatal newborn |
Image: |
2 |
|
Specimen Label: |
2 |
Detected: |
false |
Specimen Num: |
2 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3615782 |
Assay Type: |
RNA in situ |
Annotation Date: |
2006-03-27 |
Strength: |
Present |
Sex: |
Not Specified |
Emaps: |
EMAPS:1757721 |
Pattern: |
Not Specified |
Stage: |
TS21 |
Assay Id: |
MGI:3617754 |
Age: |
embryonic day 13.5 |
Image: |
E13.5 |
|
Specimen Label: |
E13.5 |
Detected: |
true |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3615782 |
Assay Type: |
RNA in situ |
Annotation Date: |
2006-03-27 |
Strength: |
Present |
Sex: |
Not Specified |
Emaps: |
EMAPS:1757727 |
Pattern: |
Not Specified |
Stage: |
TS27 |
Assay Id: |
MGI:3617754 |
Age: |
postnatal day 0 |
Image: |
P0 |
|
Specimen Label: |
P0 |
Detected: |
true |
Specimen Num: |
2 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2014-02-07 |
Strength: |
Absent |
Sex: |
Female |
Emaps: |
EMAPS:2850023 |
|
Stage: |
TS23 |
Assay Id: |
MGI:5540094 |
Age: |
embryonic day 15.5 |
Image: |
GUDMAP:6686 |
|
Specimen Label: |
GUDMAP:6686 |
Detected: |
false |
Specimen Num: |
1 |
|
•
•
•
•
•
|
GXD Expression |
Probe: |
MGI:3507147 |
Assay Type: |
RNA in situ |
Annotation Date: |
2014-02-07 |
Strength: |
Present |
Sex: |
Female |
Emaps: |
EMAPS:1796223 |
Pattern: |
Not Specified |
Stage: |
TS23 |
Assay Id: |
MGI:5540094 |
Age: |
embryonic day 15.5 |
Image: |
GUDMAP:6686 |
|
Specimen Label: |
GUDMAP:6686 |
Detected: |
true |
Specimen Num: |
1 |
|
•
•
•
•
•
|
Publication |
First Author: |
Newberry EP |
Year: |
1999 |
Journal: |
Biochemistry |
Title: |
The RRM domain of MINT, a novel Msx2 binding protein, recognizes and regulates the rat osteocalcin promoter. |
Volume: |
38 |
Issue: |
33 |
Pages: |
10678-90 |
|
•
•
•
•
•
|
Publication |
First Author: |
Surendran K |
Year: |
2010 |
Journal: |
Dev Biol |
Title: |
The contribution of Notch1 to nephron segmentation in the developing kidney is revealed in a sensitized Notch2 background and can be augmented by reducing Mint dosage. |
Volume: |
337 |
Issue: |
2 |
Pages: |
386-95 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yuan Z |
Year: |
2019 |
Journal: |
Cell Rep |
Title: |
Structural and Functional Studies of the RBPJ-SHARP Complex Reveal a Conserved Corepressor Binding Site. |
Volume: |
26 |
Issue: |
4 |
Pages: |
845-854.e6 |
|
•
•
•
•
•
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Publication |
First Author: |
McHugh CA |
Year: |
2015 |
Journal: |
Nature |
Title: |
The Xist lncRNA interacts directly with SHARP to silence transcription through HDAC3. |
Volume: |
521 |
Issue: |
7551 |
Pages: |
232-6 |
|
•
•
•
•
•
|
Publication |
First Author: |
Sierra OL |
Year: |
2004 |
Journal: |
J Biol Chem |
Title: |
MINT, the Msx2 interacting nuclear matrix target, enhances Runx2-dependent activation of the osteocalcin fibroblast growth factor response element. |
Volume: |
279 |
Issue: |
31 |
Pages: |
32913-23 |
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•
•
•
•
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Publication |
First Author: |
Sierra OL |
Year: |
2010 |
Journal: |
Mol Endocrinol |
Title: |
Runx2 trans-activation mediated by the MSX2-interacting nuclear target requires homeodomain interacting protein kinase-3. |
Volume: |
24 |
Issue: |
7 |
Pages: |
1478-97 |
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•
•
•
•
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Publication |
First Author: |
Yang X |
Year: |
2005 |
Journal: |
J Biol Chem |
Title: |
Mint represses transactivation of the type II collagen gene enhancer through interaction with alpha A-crystallin-binding protein 1. |
Volume: |
280 |
Issue: |
19 |
Pages: |
18710-6 |
|
•
•
•
•
•
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Publication |
First Author: |
Obata J |
Year: |
2001 |
Journal: |
Genes Cells |
Title: |
p48 subunit of mouse PTF1 binds to RBP-Jkappa/CBF-1, the intracellular mediator of Notch signalling, and is expressed in the neural tube of early stage embryos. |
Volume: |
6 |
Issue: |
4 |
Pages: |
345-60 |
|
•
•
•
•
•
|
Publication |
First Author: |
Miesfeld JB |
Year: |
2018 |
Journal: |
Sci Rep |
Title: |
Rbpj direct regulation of Atoh7 transcription in the embryonic mouse retina. |
Volume: |
8 |
Issue: |
1 |
Pages: |
10195 |
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•
•
•
•
•
|
Publication |
First Author: |
Hodkinson PS |
Year: |
2007 |
Journal: |
J Biol Chem |
Title: |
Mammalian NOTCH-1 activates beta1 integrins via the small GTPase R-Ras. |
Volume: |
282 |
Issue: |
39 |
Pages: |
28991-9001 |
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•
•
•
•
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Publication |
First Author: |
Crozet F |
Year: |
1997 |
Journal: |
Genomics |
Title: |
Cloning of the genes encoding two murine and human cochlear unconventional type I myosins. |
Volume: |
40 |
Issue: |
2 |
Pages: |
332-41 |
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•
•
•
•
•
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Publication |
First Author: |
Gradus B |
Year: |
2011 |
Journal: |
Dev Biol |
Title: |
miRNAs control tracheal chondrocyte differentiation. |
Volume: |
360 |
Issue: |
1 |
Pages: |
58-65 |
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•
•
•
•
•
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Publication |
First Author: |
Okazaki N |
Year: |
2003 |
Journal: |
DNA Res |
Title: |
Prediction of the coding sequences of mouse homologues of KIAA gene: II. The complete nucleotide sequences of 400 mouse KIAA-homologous cDNAs identified by screening of terminal sequences of cDNA clones randomly sampled from size-fractionated libraries. |
Volume: |
10 |
Issue: |
1 |
Pages: |
35-48 |
|
•
•
•
•
•
|
Publication |
First Author: |
McKee AE |
Year: |
2005 |
Journal: |
BMC Dev Biol |
Title: |
A genome-wide in situ hybridization map of RNA-binding proteins reveals anatomically restricted expression in the developing mouse brain. |
Volume: |
5 |
|
Pages: |
14 |
|
•
•
•
•
•
|
Publication |
First Author: |
Shanghai Model Organisms Center |
Year: |
2017 |
Journal: |
MGI Direct Data Submission |
Title: |
Information obtained from the Shanghai Model Organisms Center (SMOC), Shanghai, China |
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•
•
•
•
•
|
Publication |
First Author: |
Hansen J |
Year: |
2003 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
A large-scale, gene-driven mutagenesis approach for the functional analysis of the mouse genome. |
Volume: |
100 |
Issue: |
17 |
Pages: |
9918-22 |
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•
•
•
•
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Publication |
First Author: |
Gray PA |
Year: |
2004 |
Journal: |
Science |
Title: |
Mouse brain organization revealed through direct genome-scale TF expression analysis. |
Volume: |
306 |
Issue: |
5705 |
Pages: |
2255-7 |
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Publication |
First Author: |
Thompson CL |
Year: |
2014 |
Journal: |
Neuron |
Title: |
A high-resolution spatiotemporal atlas of gene expression of the developing mouse brain. |
Volume: |
83 |
Issue: |
2 |
Pages: |
309-323 |
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•
•
•
•
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Publication |
First Author: |
Stryke D |
Year: |
2003 |
Journal: |
Nucleic Acids Res |
Title: |
BayGenomics: a resource of insertional mutations in mouse embryonic stem cells. |
Volume: |
31 |
Issue: |
1 |
Pages: |
278-81 |
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•
•
•
•
|
Publication |
First Author: |
Helmholtz Zentrum Muenchen GmbH |
Year: |
2010 |
Journal: |
MGI Direct Data Submission |
Title: |
Alleles produced for the EUCOMM and EUCOMMTools projects by the Helmholtz Zentrum Muenchen GmbH (Hmgu) |
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•
•
•
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•
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Publication |
First Author: |
Cyagen Biosciences Inc. |
Year: |
2022 |
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Title: |
Cyagen Biosciences Website. |
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Publication |
First Author: |
GUDMAP Consortium |
Year: |
2004 |
Journal: |
www.gudmap.org |
Title: |
GUDMAP: the GenitoUrinary Development Molecular Anatomy Project |
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•
•
•
•
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Publication |
First Author: |
Hansen GM |
Year: |
2008 |
Journal: |
Genome Res |
Title: |
Large-scale gene trapping in C57BL/6N mouse embryonic stem cells. |
Volume: |
18 |
Issue: |
10 |
Pages: |
1670-9 |
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Publication |
First Author: |
GemPharmatech |
Year: |
2020 |
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Title: |
GemPharmatech Website. |
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•
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Publication |
First Author: |
Zambrowicz BP |
Year: |
2003 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
Wnk1 kinase deficiency lowers blood pressure in mice: a gene-trap screen to identify potential targets for therapeutic intervention. |
Volume: |
100 |
Issue: |
24 |
Pages: |
14109-14 |
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•
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•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2003 |
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Title: |
MGI Sequence Curation Reference |
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•
•
•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2002 |
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Title: |
Chromosome assignment of mouse genes using the Mouse Genome Sequencing Consortium (MGSC) assembly and the ENSEMBL Database |
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•
•
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Publication |
First Author: |
UniProt-GOA |
Year: |
2012 |
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Title: |
Gene Ontology annotation based on UniProtKB/Swiss-Prot keyword mapping |
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•
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•
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Publication |
First Author: |
Mouse Genome Informatics (MGI) and National Center for Biotechnology Information (NCBI) |
Year: |
2008 |
Journal: |
Database Download |
Title: |
Mouse Gene Trap Data Load from dbGSS |
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•
•
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•
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Publication |
First Author: |
Carninci P |
Year: |
2005 |
Journal: |
Science |
Title: |
The transcriptional landscape of the mammalian genome. |
Volume: |
309 |
Issue: |
5740 |
Pages: |
1559-63 |
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•
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•
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Publication |
First Author: |
The Gene Ontology Consortium |
Year: |
2010 |
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Title: |
Automated transfer of experimentally-verified manual GO annotation data to mouse-human orthologs |
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•
•
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•
•
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Publication |
First Author: |
Diez-Roux G |
Year: |
2011 |
Journal: |
PLoS Biol |
Title: |
A high-resolution anatomical atlas of the transcriptome in the mouse embryo. |
Volume: |
9 |
Issue: |
1 |
Pages: |
e1000582 |
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•
•
•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2010 |
Journal: |
Database Download |
Title: |
Mouse Microarray Data Integration in Mouse Genome Informatics, the Affymetrix GeneChip Mouse Genome U74 Array Platform (A, B, C v2). |
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•
•
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•
•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2002 |
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Title: |
Mouse Genome Informatics Computational Sequence to Gene Associations |
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•
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•
•
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Publication |
First Author: |
Marc Feuermann, Huaiyu Mi, Pascale Gaudet, Dustin Ebert, Anushya Muruganujan, Paul Thomas |
Year: |
2010 |
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Title: |
Annotation inferences using phylogenetic trees |
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|
•
•
•
•
•
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Publication |
First Author: |
Mouse Genome Informatics |
Year: |
2010 |
Journal: |
Database Release |
Title: |
Protein Ontology Association Load. |
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•
•
•
•
•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2009 |
Journal: |
Database Download |
Title: |
Mouse Microarray Data Integration in Mouse Genome Informatics, the Affymetrix GeneChip Mouse Genome 430 2.0 Array Platform |
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•
•
•
•
•
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Publication |
First Author: |
Allen Institute for Brain Science |
Year: |
2004 |
Journal: |
Allen Institute |
Title: |
Allen Brain Atlas: mouse riboprobes |
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•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Database and National Center for Biotechnology Information |
Year: |
2000 |
Journal: |
Database Release |
Title: |
Entrez Gene Load |
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•
•
•
•
•
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2009 |
Journal: |
Database Download |
Title: |
Mouse Microarray Data Integration in Mouse Genome Informatics, the Affymetrix GeneChip Mouse Gene 1.0 ST Array Platform |
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•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics (MGI) and The National Center for Biotechnology Information (NCBI) |
Year: |
2010 |
Journal: |
Database Download |
Title: |
Consensus CDS project |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Bairoch A |
Year: |
1999 |
Journal: |
Database Release |
Title: |
SWISS-PROT Annotated protein sequence database |
|
|
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|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2005 |
|
Title: |
Obtaining and Loading Genome Assembly Coordinates from Ensembl Annotations |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Group |
Year: |
2003 |
Journal: |
Database Procedure |
Title: |
Automatic Encodes (AutoE) Reference |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2005 |
|
Title: |
Obtaining and loading genome assembly coordinates from NCBI annotations |
|
|
|
|
•
•
•
•
•
|
Protein Domain |
Type: |
Domain |
Description: |
Spen (split end) proteins regulate the expression of key transcriptional effectors in diverse signalling pathways. They are large proteins characterised by N-terminal RNA-binding motifs and a highly conserved C-terminal SPOC (Spen paralog and ortholog C-terminal) domain. The function of the SPOC domain is unknown, but the SPOC domain of the SHARP Spen protein has been implicated in the interaction of SHARP with the SMRT/NcoR corepressor, where SHARP plays an essential role in the repressor complex [].The SPOC domain is folded into a single compact domain consisting of a β-barrel with seven strands framed by six alpha helices. A number of deep grooves and clefts in the surface, plus two nonpolar loops, render the SPOC domain well suited to protein-protein interactions; most of the conserved residues occur on the protein surface rather than in the core. Other proteins containing a SPOC domain include Drosophila Split ends, which promotes sclerite development in the head and restricts it in the thorax, and mouse MINT (homologue of SHARP), which is involved in skeletal and neuronal development via its repression of Msx2. |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
frog, African clawed |
|
•
•
•
•
•
|
Gene |
Type: |
gene |
Organism: |
frog, African clawed |
|
•
•
•
•
•
|
Publication |
First Author: |
Ariyoshi M |
Year: |
2003 |
Journal: |
Genes Dev |
Title: |
A conserved structural motif reveals the essential transcriptional repression function of Spen proteins and their role in developmental signaling. |
Volume: |
17 |
Issue: |
15 |
Pages: |
1909-20 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
3644
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Allele |
Name: |
spen family transcription repressor; targeted mutation 1, Shanghai Model Organisms Center |
Allele Type: |
Targeted |
Attribute String: |
Conditional ready, No functional change |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
111
 |
Fragment?: |
true |
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Protein Domain |
Type: |
Domain |
Description: |
Spen (split end) proteins regulate the expression of key transcriptional effectors in diverse signalling pathways. They are large proteins characterised by N-terminal RNA-binding motifs and a highly conserved C-terminal SPOC (Spen paralog and ortholog C-terminal) domain. The function of the SPOC domain is unknown, but the SPOC domain of the SHARP Spen protein has been implicated in the interaction of SHARP with the SMRT/NcoR corepressor, where SHARP plays an essential role in the repressor complex [].The SPOC domain is folded into a single compact domain consisting of a β-barrel with seven strands framed by six alpha helices. A number of deep grooves and clefts in the surface, plus two nonpolar loops, render the SPOC domain well suited to protein-protein interactions; most of the conserved residues occur on the protein surface rather than in the core. Other proteins containing a SPOC domain include Drosophila Split ends, which promotes sclerite development in the head and restricts it in the thorax, and mouse MINT (homologue of SHARP), which is involved in skeletal and neuronal development via its repression of Msx2. |
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Allele |
Name: |
spen family transcription repressor; wild type |
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Allele |
Name: |
spen family transcription repressor; targeted mutation 1, Tasuku Honjo |
Allele Type: |
Targeted |
Attribute String: |
Null/knockout |
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Allele |
Name: |
spen family transcription repressor; targeted mutation 2, Tasuku Honjo |
Allele Type: |
Targeted |
Attribute String: |
Conditional ready, No functional change |
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Allele |
Name: |
spen family transcription repressor; targeted mutation 2.1, Tasuku Honjo |
Allele Type: |
Targeted |
Attribute String: |
Conditional ready, No functional change |
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Allele |
Name: |
spen family transcription repressor; targeted mutation 2.2, Tasuku Honjo |
Allele Type: |
Targeted |
Attribute String: |
Null/knockout |
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Allele |
Name: |
spen family transcription repressor; gene trap CSH492, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap CSH316, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap CSH913, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap CSJ084, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap YTA456, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap YTA404, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap XC533, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap XE537, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap RST255, BayGenomics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST57794, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST68078, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST68650, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST86167, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST147501, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST194458, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST201558, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST204867, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST207190, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST207942, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST216788, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST239471, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST242524, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST258404, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST276181, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST276283, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST277439, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST297071, Lexicon Genetics |
Allele Type: |
Gene trapped |
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Allele |
Name: |
spen family transcription repressor; gene trap OST299468, Lexicon Genetics |
Allele Type: |
Gene trapped |
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