Mus musculus Gene: Rps3a | |||||||||||||||||||||||
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Summary | |||||||||||||||||||||||
InnateDB Gene | IDBG-155900.6 | ||||||||||||||||||||||
Last Modified | 2014-10-13 [Report errors or provide feedback] | ||||||||||||||||||||||
Gene Symbol | Rps3a | ||||||||||||||||||||||
Gene Name | ribosomal protein S3A | ||||||||||||||||||||||
Synonyms | Rps3a | ||||||||||||||||||||||
Species | Mus musculus | ||||||||||||||||||||||
Ensembl Gene | ENSMUSG00000028081 | ||||||||||||||||||||||
Encoded Proteins |
ribosomal protein S3A
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Protein Structure |
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Useful resources | Stemformatics EHFPI ImmGen | ||||||||||||||||||||||
Entrez Gene | |||||||||||||||||||||||
Summary |
This gene does not have any Entrez summary - the following is the summary from its human ortholog ENSG00000145425:
Ribosomes, the organelles that catalyze protein synthesis, consist of a small 40S subunit and a large 60S subunit. Together these subunits are composed of 4 RNA species and approximately 80 structurally distinct proteins. This gene encodes a ribosomal protein that is a component of the 40S subunit. The protein belongs to the S3AE family of ribosomal proteins. It is located in the cytoplasm. Disruption of the gene encoding rat ribosomal protein S3a, also named v-fos transformation effector protein, in v-fos-transformed rat cells results in reversion of the transformed phenotype. This gene is co-transcribed with the U73A and U73B small nucleolar RNA genes, which are located in its fourth and third introns, respectively. As is typical for genes encoding ribosomal proteins, there are multiple processed pseudogenes of this gene dispersed through the genome. Alternatively spliced transcript variants have been found for this gene. [provided by RefSeq, May 2012] |
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Gene Information | |||||||||||||||||||||||
Type | Protein coding | ||||||||||||||||||||||
Genomic Location | Chromosome 3:86137940-86142702 | ||||||||||||||||||||||
Strand | Reverse strand | ||||||||||||||||||||||
Band | F1 | ||||||||||||||||||||||
Transcripts |
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Interactions | |||||||||||||||||||||||
Number of Interactions |
This gene and/or its encoded proteins are associated with 9 experimentally validated interaction(s) in this database.
They are also associated with 133 interaction(s) predicted by orthology.
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Gene Ontology | |||||||||||||||||||||||
Molecular Function |
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Biological Process |
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Cellular Component |
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Orthologs | |||||||||||||||||||||||
Species
Homo sapiens
Bos taurus
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Gene ID
Gene Order
Not yet available
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Pathways | |||||||||||||||||||||||
NETPATH | |||||||||||||||||||||||
REACTOME |
Peptide chain elongation pathway
Activation of the mRNA upon binding of the cap-binding complex and eIFs, and subsequent binding to 43S pathway
Translation pathway
Eukaryotic Translation Termination pathway
Translation initiation complex formation pathway
Nonsense-Mediated Decay (NMD) pathway
Metabolism of proteins pathway
Nonsense Mediated Decay (NMD) enhanced by the Exon Junction Complex (EJC) pathway
Nonsense Mediated Decay (NMD) independent of the Exon Junction Complex (EJC) pathway
Cap-dependent Translation Initiation pathway
Eukaryotic Translation Initiation pathway
SRP-dependent cotranslational protein targeting to membrane pathway
Eukaryotic Translation Elongation pathway
Formation of a pool of free 40S subunits pathway
Gene Expression pathway
L13a-mediated translational silencing of Ceruloplasmin expression pathway
Ribosomal scanning and start codon recognition pathway
GTP hydrolysis and joining of the 60S ribosomal subunit pathway
Formation of the ternary complex, and subsequently, the 43S complex pathway
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KEGG |
Ribosome pathway
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INOH | |||||||||||||||||||||||
PID NCI | |||||||||||||||||||||||
Pathway Predictions based on Human Orthology Data | |||||||||||||||||||||||
NETPATH | |||||||||||||||||||||||
REACTOME |
L13a-mediated translational silencing of Ceruloplasmin expression pathway
Nonsense Mediated Decay (NMD) independent of the Exon Junction Complex (EJC) pathway
Nonsense Mediated Decay (NMD) enhanced by the Exon Junction Complex (EJC) pathway
GTP hydrolysis and joining of the 60S ribosomal subunit pathway
Translation initiation complex formation pathway
Activation of the mRNA upon binding of the cap-binding complex and eIFs, and subsequent binding to 43S pathway
Formation of a pool of free 40S subunits pathway
Formation of the ternary complex, and subsequently, the 43S complex pathway
Ribosomal scanning and start codon recognition pathway
Eukaryotic Translation Termination pathway
Peptide chain elongation pathway
Eukaryotic Translation Elongation pathway
SRP-dependent cotranslational protein targeting to membrane pathway
Viral mRNA Translation pathway
Eukaryotic Translation Initiation pathway
Influenza Infection pathway
Nonsense-Mediated Decay (NMD) pathway
Influenza Viral RNA Transcription and Replication pathway
Translation pathway
Metabolism of proteins pathway
Cap-dependent Translation Initiation pathway
Influenza Life Cycle pathway
Gene Expression pathway
Disease pathway
SRP-dependent cotranslational protein targeting to membrane pathway
Formation of the ternary complex, and subsequently, the 43S complex pathway
L13a-mediated translational silencing of Ceruloplasmin expression pathway
Peptide chain elongation pathway
Nonsense Mediated Decay (NMD) enhanced by the Exon Junction Complex (EJC) pathway
Gene Expression pathway
Eukaryotic Translation Initiation pathway
Cap-dependent Translation Initiation pathway
Nonsense Mediated Decay (NMD) independent of the Exon Junction Complex (EJC) pathway
Formation of a pool of free 40S subunits pathway
Translation pathway
GTP hydrolysis and joining of the 60S ribosomal subunit pathway
Metabolism of proteins pathway
Activation of the mRNA upon binding of the cap-binding complex and eIFs, and subsequent binding to 43S pathway
Translation initiation complex formation pathway
Nonsense-Mediated Decay (NMD) pathway
Ribosomal scanning and start codon recognition pathway
Eukaryotic Translation Termination pathway
Eukaryotic Translation Elongation pathway
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KEGG |
Ribosome pathway
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INOH | |||||||||||||||||||||||
PID NCI | |||||||||||||||||||||||
Cross-References | |||||||||||||||||||||||
SwissProt | P97351 | ||||||||||||||||||||||
TrEMBL | Q564F3 | ||||||||||||||||||||||
UniProt Splice Variant | |||||||||||||||||||||||
Entrez Gene | 20091 | ||||||||||||||||||||||
UniGene | Mm.469059 Mm.473097 | ||||||||||||||||||||||
RefSeq | NM_016959 | ||||||||||||||||||||||
OMIM | |||||||||||||||||||||||
CCDS | CCDS17446 | ||||||||||||||||||||||
HPRD | |||||||||||||||||||||||
IMGT | |||||||||||||||||||||||
MGI ID | MGI:1202063 | ||||||||||||||||||||||
MGI Symbol | Rps3a1 | ||||||||||||||||||||||
EMBL | AK010605 AK012345 AK050610 AK088113 AK135318 AK148513 AK150441 AK150796 AK150814 AK151982 AK159777 AK167512 AK167562 AK168240 BC039659 BC081451 BC083338 BC084675 BC106115 CH466547 Z83368 | ||||||||||||||||||||||
GenPept | AAH39659 AAH81451 AAH83338 AAH84675 AAI06116 BAB27055 BAB28176 BAC34341 BAC40152 BAE22486 BAE28594 BAE29563 BAE29859 BAE29877 BAE30849 BAE35361 BAE39587 BAE39625 BAE40190 CAB05955 EDL15384 | ||||||||||||||||||||||
RNA Seq Atlas | 20091 | ||||||||||||||||||||||