Type |
Details |
Score |
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: |
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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Publication |
First Author: |
MGI Genome Annotation Group and UniGene Staff |
Year: |
2015 |
Journal: |
Database Download |
Title: |
MGI-UniGene Interconnection Effort |
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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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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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Publication |
First Author: |
Allen Institute for Brain Science |
Year: |
2004 |
Journal: |
Allen Institute |
Title: |
Allen Brain Atlas: mouse riboprobes |
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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 |
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Publication |
First Author: |
Mouse Genome Informatics Group |
Year: |
2003 |
Journal: |
Database Procedure |
Title: |
Automatic Encodes (AutoE) Reference |
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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 |
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Title: |
Obtaining and Loading Genome Assembly Coordinates from Ensembl Annotations |
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Publication |
First Author: |
Mouse Genome Informatics |
Year: |
2010 |
Journal: |
Database Release |
Title: |
Protein Ontology Association Load. |
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Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2005 |
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Title: |
Obtaining and loading genome assembly coordinates from NCBI annotations |
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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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Publication |
First Author: |
Gai Z |
Year: |
2016 |
Journal: |
Cell Discov |
Title: |
Structural mechanism for the arginine sensing and regulation of CASTOR1 in the mTORC1 signaling pathway. |
Volume: |
2 |
|
Pages: |
16051 |
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Publication |
First Author: |
Church DM |
Year: |
2009 |
Journal: |
PLoS Biol |
Title: |
Lineage-specific biology revealed by a finished genome assembly of the mouse. |
Volume: |
7 |
Issue: |
5 |
Pages: |
e1000112 |
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Publication |
First Author: |
Harhay GP |
Year: |
2005 |
Journal: |
BMC Genomics |
Title: |
Characterization of 954 bovine full-CDS cDNA sequences. |
Volume: |
6 |
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Pages: |
166 |
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Protein Domain |
Type: |
Family |
Description: |
CASTOR family members are well-conserved in eukaryotes (including human, chimpanzee, dog, cow, mouse, rat, chicken, zebrafish) [, ]. Three subtypes, designated CASTOR1, CASTOR2 and CASTOR3, have been identified in humans.CASTOR1 can form homodimers and bind arginine. It can also form heterodimers with CASTOR2 []. The arginine binding of CASTOR1 disrupts the CASTOR1-GATOR2 interaction, and this triggers downstream activation of mTORC1 []. Therefore, CASTOR1 functions as an intracellular arginine sensor for the mTORC1 Pathway [, ]. Interestingly, CASTOR1 shares substantial structural homology with the lysine-binding regulatory domain of prokaryotic aspartate kinases []. |
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Protein Domain |
Type: |
Domain |
Description: |
CASTOR1 (Cytosolic arginine sensor for mTORC1 subunit 1) has been identified as the cytosolic arginine sensor for the mTORC1 pathway. In the absence of arginine, CASTOR1 binds to GATOR2 and inhibits mTORC1 signaling; whereas in the presence of arginine, CASTOR1 interacts with arginine and no longer associates with GATOR2. The arginine sits in a pocket between the N-terminal domain (NTD) and the C-terminal domain (CTD) of CASTOR1. The CASTOR1-NTD on the opposite side of the arginine-binding site was identified to mediate direct physical interaction with its downstream effector GATOR2, via GATOR2 subunit Mios []. |
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Protein |
Organism: |
Mus musculus/domesticus |
Length: |
329
 |
Fragment?: |
false |
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Publication |
First Author: |
Jung JW |
Year: |
2019 |
Journal: |
Cell Metab |
Title: |
Transmembrane 4Â L Six Family Member 5 Senses Arginine for mTORC1 Signaling. |
Volume: |
29 |
Issue: |
6 |
Pages: |
1306-1319.e7 |
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Publication |
First Author: |
Del Llano E |
Year: |
2020 |
Journal: |
Aging Cell |
Title: |
Age-related differences in the translational landscape of mammalian oocytes. |
Volume: |
19 |
Issue: |
10 |
Pages: |
e13231 |
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