| Identification |
| HMDB Protein ID
| CDBP01019 |
| Secondary Accession Numbers
| Not Available |
| Name
| Beta-enolase |
| Description
| Not Available |
| Synonyms
|
- 2-phospho-D-glycerate hydro-lyase
- Enolase 3
- MSE
- Muscle-specific enolase
- Skeletal muscle enolase
|
| Gene Name
| ENO3 |
| Protein Type
| Enzyme |
| Biological Properties |
| General Function
| Involved in magnesium ion binding |
| Specific Function
| Appears to have a function in striated muscle development and regeneration.
|
| GO Classification
|
| Biological Process |
| aging |
| small molecule metabolic process |
| skeletal muscle tissue regeneration |
| glycolysis |
| response to drug |
| gluconeogenesis |
| Cellular Component |
| cytosol |
| phosphopyruvate hydratase complex |
| Component |
| macromolecular complex |
| protein complex |
| phosphopyruvate hydratase complex |
| Function |
| ion binding |
| cation binding |
| metal ion binding |
| binding |
| catalytic activity |
| magnesium ion binding |
| lyase activity |
| carbon-oxygen lyase activity |
| hydro-lyase activity |
| phosphopyruvate hydratase activity |
| Molecular Function |
| magnesium ion binding |
| phosphopyruvate hydratase activity |
| Process |
| metabolic process |
| small molecule metabolic process |
| alcohol metabolic process |
| monosaccharide metabolic process |
| hexose metabolic process |
| glucose metabolic process |
| glucose catabolic process |
| glycolysis |
|
| Cellular Location
|
- Cytoplasm
|
| Pathways
|
| Name | SMPDB/Pathwhiz | KEGG | | Glycolysis / Gluconeogenesis | Not Available |  | | RNA degradation | Not Available |  | | HIF-1 signaling pathway | Not Available |  |
|
| Gene Properties |
| Chromosome Location
| 17 |
| Locus
| 17pter-p11 |
| SNPs
| ENO3 |
| Gene Sequence
|
>1305 bp
ATGGCCATGCAGAAAATCTTTGCCCGGGAAATCTTGGACTCCAGGGGCAACCCCACGGTG
GAGGTGGACCTGCACACGGCCAAGGGCCGATTCCGAGCAGCTGTGCCCAGTGGGGCTTCC
ACGGGTATCTATGAGGCTCTGGAACTAAGAGACGGAGACAAAGGCCGCTACCTGGGGAAA
GGAGTCCTGAAGGCTGTGGAGAACATCAACAATACTCTGGGCCCTGCTCTGCTGCAAAAG
AAACTAAGCGTTGTTGATCAAGAAAAAGTTGACAAATTTATGATTGAGCTAGATGGGACC
GAGAATAAGTCCAAGTTTGGGGCCAATGCCATCCTGGGCGTGTCCTTGGCCGTGTGTAAG
GCGGGAGCAGCTGAGAAGGGGGTCCCCCTGTACCGCCACATCGCAGATCTCGCTGGGAAC
CCTGACCTCATACTCCCAGTGCCAGCCTTCAATGTGATCAACGGGGGCTCCCATGCTGGA
AACAACTTGGCCATGCAGGAGTTCATGATTCTGCCTGTGGGAGCCAGCTCCTTCAAGGAA
GCCATGCGCATTGGCGCCGAGGTCTACCACCACCTCAAGGGGGTCATCAAGGCCAAGTAT
GGGAAGGATGCCACCAATGTGGGTGATGAAGGTGGCTTCGCACCCAACATCCTGGAGAAC
AATGAGGCCCTGGAGCTGCTGAAGACGGCCATCCAGGCGGCTGGTTACCCAGACAAGGTG
GTGATCGGCATGGATGTGGCAGCATCTGAGTTCTATCGCAATGGGAAGTACGATCTTGAC
TTCAAGTCGCCTGATGATCCCGCACGGCACATCACTGGGGAGAAGCTCGGAGAGCTGTAT
AAGAGCTTTATCAAGAACTATCCTGTGGTCTCCATCGAAGACCCCTTTGACCAGGATGAC
TGGGCCACTTGGACCTCCTTCCTCTCGGGGGTGAACATCCAGATTGTGGGGGATGACTTG
ACAGTCACCAACCCCAAGAGGATTGCCCAGGCCGTTGAGAAGAAGGCCTGCAACTGTCTG
CTGCTGAAGGTCAACCAGATCGGCTCGGTGACCGAATCGATCCAGGCGTGCAAACTGGCT
CAGTCTAATGGCTGGGGGGTGATGGTGAGCCACCGCTCAGGGGAGACTGAGGACACATTC
ATTGCTGACCTTGTGGTGGGGCTCTGCACAGGACAGATCAAGACTGGCGCCCCCTGCCGC
TCGGAGCGTCTGGCCAAATACAACCAACTCATGAGGATCGAGGAGGCTCTTGGGGACAAG
GCAATCTTTGCTGGACGCAAGTTCCGTAACCCGAAGGCCAAGTGA
|
| Protein Properties |
| Number of Residues
| 434 |
| Molecular Weight
| 42248.03 |
| Theoretical pI
| 7.97 |
| Pfam Domain Function
|
|
| Signals
|
Not Available
|
|
Transmembrane Regions
|
Not Available
|
| Protein Sequence
|
>Beta-enolase
MAMQKIFAREILDSRGNPTVEVDLHTAKGRFRAAVPSGASTGIYEALELRDGDKGRYLGK
GVLKAVENINSTLGPALLQKKLSVADQEKVDKFMIELDGTENKSKFGANAILGVSLAVCK
AGAAEKGVPLYRHIADLAGNPDLILPVPAFNVINGGSHAGNKLAMQEFMILPVGASSFKE
AMRIGAEVYHHLKGVIKAKYGKDATNVGDEGGFAPNILENNEALELLKTAIQAAGYPDKV
VIGMDVAASEFYRNGKYDLDFKSPDDPARHITGEKLGELYKSFIKNYPVVSIEDPFDQDD
WATWTSFLSGVNIQIVGDDLTVTNPKRIAQAVEKKACNCLLLKVNQIGSVTESIQACKLA
QSNGWGVMVSHRSGETEDTFIADLVVGLCTGQIKTGAPCRSERLAKYNQLMRIEEALGDK
AIFAGRKFRNPKAK
|
| External Links |
| GenBank ID Protein
| 31170 |
| UniProtKB/Swiss-Prot ID
| P13929 |
| UniProtKB/Swiss-Prot Entry Name
| ENOB_HUMAN |
| PDB IDs
|
|
| GenBank Gene ID
| X16504 |
| GeneCard ID
| ENO3 |
| GenAtlas ID
| ENO3 |
| HGNC ID
| HGNC:3354 |
| References |
| General References
| Not Available |