Identification |
---|
Name | Glycerol-3-phosphate O-acyltransferase 2 |
---|
Synonyms | - G-3-P acyltransferase 2
- Dihydroxyacetone phosphate acyltransferase 2
- DHAP-AT 2
- Glycerol-3-phosphate / dihydroxyacetone phosphate acyltransferase 2
|
---|
Gene Name | GPT2 |
---|
Enzyme Class | |
---|
Biological Properties |
---|
General Function | Involved in acyltransferase activity |
---|
Specific Function | G-3-P/dihydroxyacetone phosphate dual substrate-specific sn-1 acyltransferase |
---|
Cellular Location | Membrane; Multi-pass membrane protein (Probable) |
---|
SMPDB Pathways | Triacylglycerol metabolism TG(16:0/18:0/20:0) | PW007842 | | Triacylglycerol metabolism TG(16:0/18:0/22:0) | PW007878 | | Triacylglycerol metabolism TG(16:0/20:0/20:0) | PW007879 | | Triacylglycerol metabolism TG(18:0/18:0/18:0) | PW007843 | | Triacylglycerol metabolism TG(18:0/18:0/20:0) | PW007880 | |
|
---|
KEGG Pathways | Glycerophospholipid metabolism | ec00564 | |
|
---|
SMPDB Reactions |
|
---|
KEGG Reactions | |
---|
Metabolites | YMDB ID | Name | View |
---|
YMDB00045 | Coenzyme A | Show | YMDB00073 | Glycerol 3-phosphate | Show | YMDB00187 | 1-palmitoylglycerone 3-phosphate | Show | YMDB00275 | Dihydroxyacetone phosphate acyl ester | Show | YMDB00301 | Palmityl-CoA | Show | YMDB00322 | Dihydroxyacetone phosphate | Show | YMDB00469 | hexadec-2-enoyl-CoA | Show | YMDB00527 | palmitoyl-CoA | Show | YMDB00539 | oleoyl-CoA | Show | YMDB00862 | hydron | Show | YMDB01160 | PA(16:0/0:0) | Show | YMDB16273 | Glycerone phosphate | Show | YMDB16302 | 1-oleyl-2-lyso-phosphatidate | Show | YMDB16303 | 1-oleoyl-2-lyso-glycerone phosphate | Show |
|
---|
GO Classification | Component |
---|
Not Available | Function |
---|
catalytic activity | transferase activity | transferase activity, transferring acyl groups | transferase activity, transferring acyl groups other than amino-acyl groups | acyltransferase activity | Process |
---|
metabolic process |
|
---|
Gene Properties |
---|
Chromosome Location | chromosome 11 |
---|
Locus | YKR067W |
---|
Gene Sequence | >2232 bp
ATGTCTGCTCCCGCTGCCGATCATAACGCTGCCAAACCTATTCCTCATGTACCTCAAGCG
TCCCGACGGTACAAAAATTCATACAATGGATTCGTATACAATATACATACATGGCTGTAT
GATGTGTCTGTATTTCTGTTTAATATTTTGTTCACTATTTTCTTCAGAGAAATTAAGGTA
CGTGGTGCATATAACGTTCCCGAAGTTGGGGTGCCAACCATCCTTGTGTGTGCCCCTCAT
GCAAATCAGTTCATCGACCCGGCTTTGGTAATGTCGCAAACCCGTTTGCTGAAGACATCA
GCGGGAAAGTCCCGATCCAGAATGCCTTGTTTTGTTACTGCTGAGTCGAGTTTTAAGAAA
AGATTTATCTCTTTCTTTGGTCACGCAATGGGCGGTATTCCCGTGCCTAGAATTCAGGAC
AACTTGAAGCCAGTGGATGAGAATCTTGAGATTTACGCTCCGGACTTGAAGAACCACCCG
GAAATCATCAAGGGCCGCTCCAAGAACCCACAGACTACACCAGTGAACTTTACGAAAAGG
TTTTCTGCCAAGTCCTTGCTTGGATTGCCCGACTACTTAAGTAATGCTCAAATCAAGGAA
ATCCCGGATGATGAAACGATAATCTTGTCCTCTCCATTCAGAACATCGAAATCAAAAGTG
GTGGAGCTCTTGACTAATGGTACTAATTTTAAATATGCAGAGAAAATCGACAATACGGAA
ACTTTCCAGAGTGTTTTTGATCACTTGCATACGAAGGGCTGTGTAGGTATTTTCCCCGAG
GGTGGTTCTCATGACCGTCCTTCGTTACTACCCATCAAGGCAGGTGTTGCCATTATGGCT
CTGGGCGCAGTAGCCGCTGATCCTACCATGAAAGTTGCTGTTGTACCCTGTGGTTTGCAT
TATTTCCACAGAAATAAATTCAGATCTAGAGCTGTTTTAGAATACGGCGAACCTATAGTG
GTGGATGGGAAATATGGCGAAATGTATAAGGACTCCCCACGTGAGACCGTTTCCAAACTA
CTAAAAAAGATCACCAATTCTTTGTTTTCTGTTACCGAAAATGCTCCAGATTACGATACT
TTGATGGTCATTCAGGCTGCCAGAAGACTATATCAACCGGTAAAAGTCAGGCTACCTTTG
CCTGCCATTGTAGAAATCAACAGAAGGTTACTTTTCGGTTATTCCAAGTTTAAAGATGAT
CCAAGAATTATTCACTTAAAAAAACTGGTATATGACTACAACAGGAAATTAGATTCAGTG
GGTTTAAAAGACCATCAGGTGATGCAATTAAAAACTACCAAATTAGAAGCATTGAGGTGC
TTTGTAACTTTGATCGTTCGATTGATTAAATTTTCTGTCTTTGCTATACTATCGTTACCG
GGTTCTATTCTCTTCACTCCAATTTTCATTATTTGTCGCGTATACTCAGAAAAGAAGGCC
AAAGAGGGTTTAAAGAAATCATTGGTTAAAATTAAGGGTACCGATTTGTTGGCCACATGG
AAACTTATCGTGGCGTTAATATTGGCACCAATTTTATACGTTACTTACTCGATCTTGTTG
ATTATTTTGGCAAGAAAACAACACTATTGTCGCATCTGGGTTCCTTCCAATAACGCATTC
ATACAATTTGTCTATTTTTATGCGTTATTGGTTTTCACCACGTATTCCTCTTTAAAGACC
GGTGAAATCGGTGTTGACCTTTTCAAATCTTTAAGACCACTTTTTGTTTCTATTGTTTAC
CCCGGTAAGAAGATCGAAGAAATCCAAACAACAAGAAAGAATTTAAGTCTAGAGTTGACT
GCTGTTTGTAACGATTTAGGACCTTTGGTTTTCCCTGATTACGATAAATTAGCGACTGAG
ATATTCTCTAAGAGAGACGGTTATGATGTCTCTTCTGATGCAGAGTCTTCTATAAGTCGT
ATGAGTGTACAATCTAGAAGCCGCTCTTCTTCTATACATTCTATTGGCTCGCTAGCTTCT
AACGCCCTATCAAGAGTGAATTCAAGAGGCTCGTTGACCGATATTCCAATTTTTTCTGAT
GCAAAGCAAGGTCAATGGAAAAGTGAAGGTGAAACTAGTGAGGATGAGGATGAATTTGAT
GAGAAAAATCCTGCCATAGTACAAACCGCACGAAGTTCTGATCTAAATAAGGAAAACAGT
CGCAACACAAATATATCTTCGAAGATTGCTTCGCTGGTAAGACAGAAAAGAGAACACGAA
AAGAAAGAATGA |
---|
Protein Properties |
---|
Pfam Domain Function | |
---|
Protein Residues | 743 |
---|
Protein Molecular Weight | 83644.0 |
---|
Protein Theoretical pI | 10.0 |
---|
Signalling Regions | |
---|
Transmembrane Regions | - 31-55
- 69-85
- 502-524
- 539-555
|
---|
Protein Sequence | >Glycerol-3-phosphate O-acyltransferase 2
MSAPAADHNAAKPIPHVPQASRRYKNSYNGFVYNIHTWLYDVSVFLFNILFTIFFREIKV
RGAYNVPEVGVPTILVCAPHANQFIDPALVMSQTRLLKTSAGKSRSRMPCFVTAESSFKK
RFISFFGHAMGGIPVPRIQDNLKPVDENLEIYAPDLKNHPEIIKGRSKNPQTTPVNFTKR
FSAKSLLGLPDYLSNAQIKEIPDDETIILSSPFRTSKSKVVELLTNGTNFKYAEKIDNTE
TFQSVFDHLHTKGCVGIFPEGGSHDRPSLLPIKAGVAIMALGAVAADPTMKVAVVPCGLH
YFHRNKFRSRAVLEYGEPIVVDGKYGEMYKDSPRETVSKLLKKITNSLFSVTENAPDYDT
LMVIQAARRLYQPVKVRLPLPAIVEINRRLLFGYSKFKDDPRIIHLKKLVYDYNRKLDSV
GLKDHQVMQLKTTKLEALRCFVTLIVRLIKFSVFAILSLPGSILFTPIFIICRVYSEKKA
KEGLKKSLVKIKGTDLLATWKLIVALILAPILYVTYSILLIILARKQHYCRIWVPSNNAF
IQFVYFYALLVFTTYSSLKTGEIGVDLFKSLRPLFVSIVYPGKKIEEIQTTRKNLSLELT
AVCNDLGPLVFPDYDKLATEIFSKRDGYDVSSDAESSISRMSVQSRSRSSSIHSIGSLAS
NALSRVNSRGSLTDIPIFSDAKQGQWKSEGETSEDEDEFDEKNPAIVQTARSSDLNKENS
RNTNISSKIASLVRQKREHEKKE |
---|
References |
---|
External Links | |
---|
General Reference | - Zheng, Z., Zou, J. (2001). "The initial step of the glycerolipid pathway: identification of glycerol 3-phosphate/dihydroxyacetone phosphate dual substrate acyltransferases in Saccharomyces cerevisiae." J Biol Chem 276:41710-41716.11544256
- Dujon, B., Alexandraki, D., Andre, B., Ansorge, W., Baladron, V., Ballesta, J. P., Banrevi, A., Bolle, P. A., Bolotin-Fukuhara, M., Bossier, P., et, a. l. .. (1994). "Complete DNA sequence of yeast chromosome XI." Nature 369:371-378.8196765
- Ghaemmaghami, S., Huh, W. K., Bower, K., Howson, R. W., Belle, A., Dephoure, N., O'Shea, E. K., Weissman, J. S. (2003). "Global analysis of protein expression in yeast." Nature 425:737-741.14562106
- Peng, J., Schwartz, D., Elias, J. E., Thoreen, C. C., Cheng, D., Marsischky, G., Roelofs, J., Finley, D., Gygi, S. P. (2003). "A proteomics approach to understanding protein ubiquitination." Nat Biotechnol 21:921-926.12872131
- Kim, H., Melen, K., Osterberg, M., von Heijne, G. (2006). "A global topology map of the Saccharomyces cerevisiae membrane proteome." Proc Natl Acad Sci U S A 103:11142-11147.16847258
- Li, X., Gerber, S. A., Rudner, A. D., Beausoleil, S. A., Haas, W., Villen, J., Elias, J. E., Gygi, S. P. (2007). "Large-scale phosphorylation analysis of alpha-factor-arrested Saccharomyces cerevisiae." J Proteome Res 6:1190-1197.17330950
- Smolka, M. B., Albuquerque, C. P., Chen, S. H., Zhou, H. (2007). "Proteome-wide identification of in vivo targets of DNA damage checkpoint kinases." Proc Natl Acad Sci U S A 104:10364-10369.17563356
- Albuquerque, C. P., Smolka, M. B., Payne, S. H., Bafna, V., Eng, J., Zhou, H. (2008). "A multidimensional chromatography technology for in-depth phosphoproteome analysis." Mol Cell Proteomics 7:1389-1396.18407956
|
---|