YALI0E06457g
similar to uniprot|P07702 Saccharomyces cerevisiae YBR115c LYS2 Alpha aminoadipate reductase, catalyzes the reduction of alpha-aminoadipate to alpha-aminoadipate 6-semialdehyde, which is the fifth step in biosynthesis of lysine
Element type: CDS
Element length: 4242 nucleotides,
on sense strand of
Yali0E: 734132..738373.
Other names:
YALI-CDS0125.1
YALI-IPF2373
Coding sequence: 1414 codons.
Element length: 4242 nucleotides,
on sense strand of
Yali0E: 734132..738373.
Other names:
YALI-CDS0125.1
YALI-IPF2373
Coding sequence: 1414 codons.
Database cross references:
EMBL: CR382131
GeneID: 2912394
HOGENOM: Q6C6T5
Orthologs: strict determination not possible; homologs must be refined manually
EMBL: CR382131
GeneID: 2912394
HOGENOM: Q6C6T5
Homologs and Orthologs
Homologs in protein families: GL3R2044 GL3R2044.N1Orthologs: strict determination not possible; homologs must be refined manually
Protein YALI0E06457p 
similar to uniprot|P07702 Saccharomyces cerevisiae YBR115c LYS2 L-aminoadipate-semialdehyde dehydrogenase large subunit
Protein domain map
Database cross references:
Gene3D: G3DSA:1.10.1200.10
Gene3D: G3DSA:3.40.50.720
InterPro: IPR000873
InterPro: IPR001242
InterPro: IPR006162
InterPro: IPR006163
InterPro: IPR009081
InterPro: IPR010071
InterPro: IPR010080
InterPro: IPR013120
InterPro: IPR014397
InterPro: IPR016040
KEGG: yli:YALI0E06457g
PIRSF: PIRSF001617
PRINTS: PR00154
PROSITE: PS00012
PROSITE: PS00455
PROSITE: PS50075
Pfam: PF00501
Pfam: PF00550
Pfam: PF00668
Pfam: PF07993
RefSeq: XP_503627.1
TIGRFAMs: TIGR01733
TIGRFAMs: TIGR01746
TIGRFAMs: TIGR03443
UniProtKB/TrEMBL: Q6C6T5
UniprotKB: Q6C6T5_YARLI
Gene3D: G3DSA:1.10.1200.10
Gene3D: G3DSA:3.40.50.720
InterPro: IPR000873
InterPro: IPR001242
InterPro: IPR006162
InterPro: IPR006163
InterPro: IPR009081
InterPro: IPR010071
InterPro: IPR010080
InterPro: IPR013120
InterPro: IPR014397
InterPro: IPR016040
KEGG: yli:YALI0E06457g
PIRSF: PIRSF001617
PRINTS: PR00154
PROSITE: PS00012
PROSITE: PS00455
PROSITE: PS50075
Pfam: PF00501
Pfam: PF00550
Pfam: PF00668
Pfam: PF07993
RefSeq: XP_503627.1
TIGRFAMs: TIGR01733
TIGRFAMs: TIGR01746
TIGRFAMs: TIGR03443
UniProtKB/TrEMBL: Q6C6T5
UniprotKB: Q6C6T5_YARLI
Gene Ontology terms 
| GO:0048037 | cofactor binding |
| GO:0016874 | ligase activity |
| GO:0008152 | metabolic process |
| GO:0004043 | L-aminoadipate-semialdehyde dehydrogenase activity |
Sequence data 
Nucleotide sequence
>YALI0E06457g.nt TGTTGCTCATAATCTGTAACCGTGTCTCAAATTTTTATCACTTTATCATTTGATACCACA GCCAACCACAGCCTGTCATTAATGACATCGCTCTGCACATCAACCCACCTTGGAGATGTA CTGTACGAGTAGCGGTTCAAGCCTTGTCCGGGTTGGGGTCTGTGTTCACAGATCAGGTTT TTCAGAAGACTGTAGGGTTAGGGTATAGTTGGGGTGCGGAGCTCGTGGTATGATTTATTA TGTCATCTGCATTTGCAGTGATAATATCTATAGGTCAGTAAAATCACGTGACCATTTTCT TTGATCACCCCCCATCAGCTGCACTCCACTGCAGTATGACTCAGTGCACCTGTCTCGATA TAACCTTCCAAATCGAAAGCTTGCAACTTTCGGTTTTGACATCTGTTTGAAAACTTGTCT CTACAAAAAAAAAAAACTACCGACAATGTCGTGTGAGTATCCATGGGAAATTGAAGGAAT CGTTCGTGAGATCGCTTGGTCAGGCTTAAAATTGAGATCAATCGTCTGTGAACTGTCATC TGGATTGTGTCTACCGATGTCTGATCTGACCAGAACAGTGCCATGAGCAAATCGTTGTGG AGGATGCGGCACAAACAGAGTGGATGGTATGCGATATGAGAAATGGATCATTGCGGCTCT TTTGATTGAGGATCTGGTTACTTTATCACTGTCTGTCGTTGTCTTTCTGTCAATGTAGCT ATGACTACAGTATAGCATTGACACAATGAGCAGTCACACGGAGAAGCCTTAATCAGACAC TCGTTGGCAAATGCGATTGTCTATATGACCCCGCTTCGAGTTCTGTAGCCTCCAATTCCC GCCGTCATCGCAGTATGAATACTATGTTGTCTGCTATACTATACTCATGGACAACGGCAG GACTCTTTTAAGACGTGATACCGAGACTCATGACCTGGACAAAGAAAGGGTACTTATTCT GTGTCAGCTATTTATTAGGTCCGCTCTGACCTTCGGCCCTATGTACCGTACTAATACAGT AACACAATGGGCAACCGCCCTTACCAACCCCACACTCTCAGTCCTCCCGTTCGATTTCGT CCGCCCCGCTGAAGGCAGTGTAGTCGAAGCACAATTGACGGAGGCTCTTAGCTCCAAGAC CGTGGCCGAGCTCGATCAGATTGCCAAGAACAGCGGTGTAGCAGGCGCTACTGATTTCTC TGCAGCTCTGGCTCTCTACGCCATTCTCGTCTACCGTCTCTCGGGCGACGAGGACGTGTG TCTCGGATCCGACGACGCCGAGGGAAACGTCTTTGTCTTCCGATCCAACCTCAACGGCAC TTCCACCTCTCTGGGTGACCTCATCAAGTCTGTGGTTGAGTTTGAAACGTGGCAGAAGGA CTCTGGCGTCAAGTTCGCCGACATTCTGGCTGAGATCCAGACCTCGCAGAAGCTGGAGTC AGAGCCAGTACTGTTCCGAACGTCTTTCCAGCACCTTCAGAGCGACACAGAGTCACAATC TGTTCTGGGCCCCGCTGCCGGCCGTCTCACAGACGTGTCCGTCTATCTAGGCAAGGAGTC TCTGTCCATCCACTACAACTCTCTGCTGTACAAGGAAGATCGAATGAAGCTCTTTGCTAG CCAGATTGTCGAGCTCATTGCCCAGGCTGCCGTTCTTGGCCCCTCCGCTGAGGTCGGTAA GCTATCTCTTCTGTCGCCCCAGCAACGGGACGGCTCTCTGCTGCCCCTTCCCACTTCTGA TCTCGACTGGAGCGGGTTCCGAGGCCCTATCCACGAGATCTTCGCTGAGAACGCCAAAAA CCACCCCGACCGGCCCTGCTGTGTTGAGACCGCCTCGGCTCTGTGTCCCGAGTCCAAGGA GCGGTCGTTCACCTACAAGCAGATTGACGAGGCGTCCAACGTGCTGGCGCACCATCTGGT GGCTTCCGGTATCAAGCCCGGTCACGTGGTCATGATCTACGCCTACAGAGGAGTCGATCT TGTGGTCTCCGTCATGGGTACTCTCAAGGCTGGAGCCACTTTCTCCGTTATTGATCCTGC CTATCCTCCTGCTCGACAGACCATTTACCTGCGAGTAGCTCAGCCCCGAGCTCTGGTTGT GATTGGTAAGGCTGGCAAGATTGACCAGCTCGTCACCGACTACTGTGACAAGGAACTGCA GTTACTGACTTTGGTCCCTGAGCTGGCCCTCACTGACGACGGTGCTCTGGTCGGAGGAGA AGTTGAAGGGAGCGACATCCTGGCTTCCTCTCAGGCTAAGAAGGGCGAGCAGACTGGTGT TCTTGTCGGCCCCGACTCTAACCCCACACTCTCCTTCACCTCTGGTTCCGAGGGTATTCC CAAGGGTGTTCTTGGTCGACACTACTCGCTGACCTACTACTTCCCCTGGATGGCTGAGAC CTTTGGTCTCTCCGACAAGGATAAGTTCACAATGTTGTCTGGTATCGCACACGATCCCAT TCAGCGAGACATTTTCACCCCTCTCTTCTTGGGTGCCCAGCTCATCATCCCCACTTCGGA CGATATTGGTACTCCCGGACGTCTGGCTGAGTGGATGGCCACCTACGAGACCACTGTGAC TCATCTGACTCCTGCCATGGGTCAGCTTCTCAGTGCTCAGGCGACTGCCCAGATCCCCTC TCTTCACCATGCGTTCTTTGTCGGCGACATTCTCACCAAGCGAGACTGCACTCGACTGCA GAAGCTTGCCCAGAACGTATTCATCGTCAACATGTACGGCACCACCGAAACCCAGCGATC CGTTTCATACTTTCAGGTCGCTTCCTACGCCTCGGATTCGTCTTTCTTGGCTCAACAGAA GGACATTATGCCCGCTGGCAAGGGTATGAAGAATGTGCAACTGCTCGTTGTGAACCGACA CGACCGAACCCAGACCTGCGGTGTCGGAGAGGTCGGAGAGATCTACGTGCGAGCCGCTGG TCTCGCCGAAGGCTACCTTCTCAACGACGCGCTCAACGCCGAGAAATTTGTCACCAACTG GTTTGTGACTCCCGAGCACTGGATCCAGGAGGACGAGAAGGTCAACAAGGGTGAGGCCTG GAGAGAGTTCTACAAGGGTCCCCGGGATCGGCTGTACAGAACTGGAGATCTCGGCCGGTA CCTTCCCGATGGAAACGTTGAGTGTTCCGGACGAGCCGATGACCAGGTGAAGATTCGAGG TTTCCGAATCGAGCTTGGCGAGATCGACACTCATCTGTCTCGACACCCCCTGGTGCGTGA AAACGTGACTCTGGTGCGTCGAGACAAGGACGAGGAGCCCGTCCTGACTTCGTACATTGT TGTCCAGAACACTGACGCCGTCAACGAGTTTTTGGATGCTCAGGAGGACGAGGAAGAGAC CGACCAGGTTGTTCAGGGTCTTTTCAAGTACAGAAAGCTCATCAAGAACATTAAAGAGTT CCTCAAGACCAAGCTGCCCTCTTACGCCATTCCTACTGTTGTTGTCCCCCTCGCTAAGAT GCCTCTGAACCCCAACGGAAAGGTCGACAAGCCCGCCCTGCCCTTCCCTGATACTGCTCA GCTGGCTATTGTTGCCCAGAAGGCCGCTGCTGCCTCTGGAGATGCCAACGCTGCTCCCAT CGAGTTCACCGAGACCCAGGCTGCCATTCGAGACATTTGGCTCGATGTTTTGCCCCAGCA GCCCGCCACCATTTCTCCTGATGACTCTTTCTTCGATCTTGGTGGCCACTCCATTCTGGC TACTCGTATGATCTTTGAGCTACGAAAGAAGCTCATGGTAGAGATCCCCCTTGGTCTCAT TTTCAAGTCTCCCTCCATTGCCGGCTTTGCCCTTGAGGTCGACAAGCTCAAGAAGGGAGG CGAGGTTGAGTTCCACGGTGAGAATGAGAGCGACGAGCAGGAGCAGGCTGCCGTTGACTA CTACAACGACGCCAAGACTCTAATTGCCGACGCGAAGCTTGTTGCTTCGTCTTACCCATC TCATTCCGGCAAACTCGACGCATCTGCGCCTGTCAAGGTCTTCTTGACTGGAGGAACCGG TTTTCTGGGCTCTTTCCTGCTCCGGGACCTGCTCGAGCGATCGCAGAACATCCATGTGTT TGCCCACGTTCGAGCCAAGACCGTGGAGGCTGGTTTGGACCGTCTGCGAAACTCTTCCGA GGCCTATGGCATCTGGAAGGATGAGTGGGCTTCTCGAATCACCCCCATCATTGGCGATCT CGAAAAGGCCGACTTTGGCCTGTCTAAGGAGCAGTTCTCCCAACTCACCGATGAGGTTGA TGTGATCATTCACAACGGAGCTCTGGTCCACTGGGTGTACCCTTACTCCACTCTCCGAGG TCCAAACGTGCTTGGATCTATCAACGTCATGAACCTCGCTCTGACTGGCAAGGCCAAGAT CTTCAACTTTGTGTCCTCCACCTCTGCCGTCGACACCGAGCACTTCAACAAGCTGTCTGC CGATCTGGTGGAGGAGGGCAAGGCTGGCGTTCCCGAGTCCGACGATCTCATGGGTTCTTC TGTGGGTCTCGGCAACGGCTACGGACAGTCCAAGTGGGTCGCAGAGCACGTGATCCGAGA GGCCGGAGCCCGGGGACTCACCGGAACCATCATTCGACCTGGTTACGTTGTCGGAGACTC CAAGACCGGAGCCACCAACACGGACGATTTCCTGGTTCGAATGATCAAGGGATGCATCCA GCTGGGTGAGATTCCCAACATCCACAACTCGGTCAACATGGTGCCCGTCGATCACGTGGC TCGGGTTGTTACTGCCGCCTCTTTCTGGCCCAAGCAGCCTTCCGGCGTGGTTGTCGCCCA TGTGACTTCCCAGCCTCGAACACGGTTCAACGAATTCCTGCAGACCCTCCAGAAGTACGG TTACAAAGTTTCTGTCGAGGACTACGTCACCTGGCGTCTGGCTCTGGAGAAGTTTGTTGT TGAGGACTCGCAGGACTCTGCCCTGTATCCTCTGCTACACTTTGTGCTCGATGACCTTCC CCAGTCTACCAAGGCCCCCGAGCTGGATGACTCCAATGCTCGATCTGCTCTCTCTCGAGA CGCTGAGTGGACCGGAGTCGATTTGTCCGCTGGTAAGGGCGTTGACGAGGCTCAAATGGG TATCTACCTGGCTTACCTGGTGGCTGTCGGCTTCCTGGATGCCCCCCAGTCCAAGGTTGA GCTTGCTTTGCCGAAGGTGGAGCTGTCTGAGCAGACCCTTGATAAGCTGAAGAGTGTCGG TGGACGTGGTGGTAACAAGTAAGCAGTGCCGTAGGGAGTGCCTTGACCATAAGGCGATGC GAAGCATTGCCATTTTGTTATTTGTTACCGTGTAATGGTGATTATTGCTTGTCTGTGAGC AGACTATTTTTGTATGATTTAATTAATTATGATATATATGACTAAATGTGAGGTGTCGCA ATAATTACAGCATTTTTCGTTTGAGATGGTTTGTATTGTAGCCAGTGCTCAAAAATTGAG CGTAAATTTGATAGCGTTTGCTGATGAGCAAGTGGAAGCATGGGAATCTCATCCCCAGAA CTCGTAATAGTTACATACGGCA
Coding sequence
>YALI0E06457g.cds ATGTACCGTACTAATACAGTAACACAATGGGCAACCGCCCTTACCAACCCCACACTCTCA GTCCTCCCGTTCGATTTCGTCCGCCCCGCTGAAGGCAGTGTAGTCGAAGCACAATTGACG GAGGCTCTTAGCTCCAAGACCGTGGCCGAGCTCGATCAGATTGCCAAGAACAGCGGTGTA GCAGGCGCTACTGATTTCTCTGCAGCTCTGGCTCTCTACGCCATTCTCGTCTACCGTCTC TCGGGCGACGAGGACGTGTGTCTCGGATCCGACGACGCCGAGGGAAACGTCTTTGTCTTC CGATCCAACCTCAACGGCACTTCCACCTCTCTGGGTGACCTCATCAAGTCTGTGGTTGAG TTTGAAACGTGGCAGAAGGACTCTGGCGTCAAGTTCGCCGACATTCTGGCTGAGATCCAG ACCTCGCAGAAGCTGGAGTCAGAGCCAGTACTGTTCCGAACGTCTTTCCAGCACCTTCAG AGCGACACAGAGTCACAATCTGTTCTGGGCCCCGCTGCCGGCCGTCTCACAGACGTGTCC GTCTATCTAGGCAAGGAGTCTCTGTCCATCCACTACAACTCTCTGCTGTACAAGGAAGAT CGAATGAAGCTCTTTGCTAGCCAGATTGTCGAGCTCATTGCCCAGGCTGCCGTTCTTGGC CCCTCCGCTGAGGTCGGTAAGCTATCTCTTCTGTCGCCCCAGCAACGGGACGGCTCTCTG CTGCCCCTTCCCACTTCTGATCTCGACTGGAGCGGGTTCCGAGGCCCTATCCACGAGATC TTCGCTGAGAACGCCAAAAACCACCCCGACCGGCCCTGCTGTGTTGAGACCGCCTCGGCT CTGTGTCCCGAGTCCAAGGAGCGGTCGTTCACCTACAAGCAGATTGACGAGGCGTCCAAC GTGCTGGCGCACCATCTGGTGGCTTCCGGTATCAAGCCCGGTCACGTGGTCATGATCTAC GCCTACAGAGGAGTCGATCTTGTGGTCTCCGTCATGGGTACTCTCAAGGCTGGAGCCACT TTCTCCGTTATTGATCCTGCCTATCCTCCTGCTCGACAGACCATTTACCTGCGAGTAGCT CAGCCCCGAGCTCTGGTTGTGATTGGTAAGGCTGGCAAGATTGACCAGCTCGTCACCGAC TACTGTGACAAGGAACTGCAGTTACTGACTTTGGTCCCTGAGCTGGCCCTCACTGACGAC GGTGCTCTGGTCGGAGGAGAAGTTGAAGGGAGCGACATCCTGGCTTCCTCTCAGGCTAAG AAGGGCGAGCAGACTGGTGTTCTTGTCGGCCCCGACTCTAACCCCACACTCTCCTTCACC TCTGGTTCCGAGGGTATTCCCAAGGGTGTTCTTGGTCGACACTACTCGCTGACCTACTAC TTCCCCTGGATGGCTGAGACCTTTGGTCTCTCCGACAAGGATAAGTTCACAATGTTGTCT GGTATCGCACACGATCCCATTCAGCGAGACATTTTCACCCCTCTCTTCTTGGGTGCCCAG CTCATCATCCCCACTTCGGACGATATTGGTACTCCCGGACGTCTGGCTGAGTGGATGGCC ACCTACGAGACCACTGTGACTCATCTGACTCCTGCCATGGGTCAGCTTCTCAGTGCTCAG GCGACTGCCCAGATCCCCTCTCTTCACCATGCGTTCTTTGTCGGCGACATTCTCACCAAG CGAGACTGCACTCGACTGCAGAAGCTTGCCCAGAACGTATTCATCGTCAACATGTACGGC ACCACCGAAACCCAGCGATCCGTTTCATACTTTCAGGTCGCTTCCTACGCCTCGGATTCG TCTTTCTTGGCTCAACAGAAGGACATTATGCCCGCTGGCAAGGGTATGAAGAATGTGCAA CTGCTCGTTGTGAACCGACACGACCGAACCCAGACCTGCGGTGTCGGAGAGGTCGGAGAG ATCTACGTGCGAGCCGCTGGTCTCGCCGAAGGCTACCTTCTCAACGACGCGCTCAACGCC GAGAAATTTGTCACCAACTGGTTTGTGACTCCCGAGCACTGGATCCAGGAGGACGAGAAG GTCAACAAGGGTGAGGCCTGGAGAGAGTTCTACAAGGGTCCCCGGGATCGGCTGTACAGA ACTGGAGATCTCGGCCGGTACCTTCCCGATGGAAACGTTGAGTGTTCCGGACGAGCCGAT GACCAGGTGAAGATTCGAGGTTTCCGAATCGAGCTTGGCGAGATCGACACTCATCTGTCT CGACACCCCCTGGTGCGTGAAAACGTGACTCTGGTGCGTCGAGACAAGGACGAGGAGCCC GTCCTGACTTCGTACATTGTTGTCCAGAACACTGACGCCGTCAACGAGTTTTTGGATGCT CAGGAGGACGAGGAAGAGACCGACCAGGTTGTTCAGGGTCTTTTCAAGTACAGAAAGCTC ATCAAGAACATTAAAGAGTTCCTCAAGACCAAGCTGCCCTCTTACGCCATTCCTACTGTT GTTGTCCCCCTCGCTAAGATGCCTCTGAACCCCAACGGAAAGGTCGACAAGCCCGCCCTG CCCTTCCCTGATACTGCTCAGCTGGCTATTGTTGCCCAGAAGGCCGCTGCTGCCTCTGGA GATGCCAACGCTGCTCCCATCGAGTTCACCGAGACCCAGGCTGCCATTCGAGACATTTGG CTCGATGTTTTGCCCCAGCAGCCCGCCACCATTTCTCCTGATGACTCTTTCTTCGATCTT GGTGGCCACTCCATTCTGGCTACTCGTATGATCTTTGAGCTACGAAAGAAGCTCATGGTA GAGATCCCCCTTGGTCTCATTTTCAAGTCTCCCTCCATTGCCGGCTTTGCCCTTGAGGTC GACAAGCTCAAGAAGGGAGGCGAGGTTGAGTTCCACGGTGAGAATGAGAGCGACGAGCAG GAGCAGGCTGCCGTTGACTACTACAACGACGCCAAGACTCTAATTGCCGACGCGAAGCTT GTTGCTTCGTCTTACCCATCTCATTCCGGCAAACTCGACGCATCTGCGCCTGTCAAGGTC TTCTTGACTGGAGGAACCGGTTTTCTGGGCTCTTTCCTGCTCCGGGACCTGCTCGAGCGA TCGCAGAACATCCATGTGTTTGCCCACGTTCGAGCCAAGACCGTGGAGGCTGGTTTGGAC CGTCTGCGAAACTCTTCCGAGGCCTATGGCATCTGGAAGGATGAGTGGGCTTCTCGAATC ACCCCCATCATTGGCGATCTCGAAAAGGCCGACTTTGGCCTGTCTAAGGAGCAGTTCTCC CAACTCACCGATGAGGTTGATGTGATCATTCACAACGGAGCTCTGGTCCACTGGGTGTAC CCTTACTCCACTCTCCGAGGTCCAAACGTGCTTGGATCTATCAACGTCATGAACCTCGCT CTGACTGGCAAGGCCAAGATCTTCAACTTTGTGTCCTCCACCTCTGCCGTCGACACCGAG CACTTCAACAAGCTGTCTGCCGATCTGGTGGAGGAGGGCAAGGCTGGCGTTCCCGAGTCC GACGATCTCATGGGTTCTTCTGTGGGTCTCGGCAACGGCTACGGACAGTCCAAGTGGGTC GCAGAGCACGTGATCCGAGAGGCCGGAGCCCGGGGACTCACCGGAACCATCATTCGACCT GGTTACGTTGTCGGAGACTCCAAGACCGGAGCCACCAACACGGACGATTTCCTGGTTCGA ATGATCAAGGGATGCATCCAGCTGGGTGAGATTCCCAACATCCACAACTCGGTCAACATG GTGCCCGTCGATCACGTGGCTCGGGTTGTTACTGCCGCCTCTTTCTGGCCCAAGCAGCCT TCCGGCGTGGTTGTCGCCCATGTGACTTCCCAGCCTCGAACACGGTTCAACGAATTCCTG CAGACCCTCCAGAAGTACGGTTACAAAGTTTCTGTCGAGGACTACGTCACCTGGCGTCTG GCTCTGGAGAAGTTTGTTGTTGAGGACTCGCAGGACTCTGCCCTGTATCCTCTGCTACAC TTTGTGCTCGATGACCTTCCCCAGTCTACCAAGGCCCCCGAGCTGGATGACTCCAATGCT CGATCTGCTCTCTCTCGAGACGCTGAGTGGACCGGAGTCGATTTGTCCGCTGGTAAGGGC GTTGACGAGGCTCAAATGGGTATCTACCTGGCTTACCTGGTGGCTGTCGGCTTCCTGGAT GCCCCCCAGTCCAAGGTTGAGCTTGCTTTGCCGAAGGTGGAGCTGTCTGAGCAGACCCTT GATAAGCTGAAGAGTGTCGGTGGACGTGGTGGTAACAAGTAA
Predicted translation product
>YALI0E06457g.aa MYRTNTVTQWATALTNPTLSVLPFDFVRPAEGSVVEAQLTEALSSKTVAELDQIAKNSGV AGATDFSAALALYAILVYRLSGDEDVCLGSDDAEGNVFVFRSNLNGTSTSLGDLIKSVVE FETWQKDSGVKFADILAEIQTSQKLESEPVLFRTSFQHLQSDTESQSVLGPAAGRLTDVS VYLGKESLSIHYNSLLYKEDRMKLFASQIVELIAQAAVLGPSAEVGKLSLLSPQQRDGSL LPLPTSDLDWSGFRGPIHEIFAENAKNHPDRPCCVETASALCPESKERSFTYKQIDEASN VLAHHLVASGIKPGHVVMIYAYRGVDLVVSVMGTLKAGATFSVIDPAYPPARQTIYLRVA QPRALVVIGKAGKIDQLVTDYCDKELQLLTLVPELALTDDGALVGGEVEGSDILASSQAK KGEQTGVLVGPDSNPTLSFTSGSEGIPKGVLGRHYSLTYYFPWMAETFGLSDKDKFTMLS GIAHDPIQRDIFTPLFLGAQLIIPTSDDIGTPGRLAEWMATYETTVTHLTPAMGQLLSAQ ATAQIPSLHHAFFVGDILTKRDCTRLQKLAQNVFIVNMYGTTETQRSVSYFQVASYASDS SFLAQQKDIMPAGKGMKNVQLLVVNRHDRTQTCGVGEVGEIYVRAAGLAEGYLLNDALNA EKFVTNWFVTPEHWIQEDEKVNKGEAWREFYKGPRDRLYRTGDLGRYLPDGNVECSGRAD DQVKIRGFRIELGEIDTHLSRHPLVRENVTLVRRDKDEEPVLTSYIVVQNTDAVNEFLDA QEDEEETDQVVQGLFKYRKLIKNIKEFLKTKLPSYAIPTVVVPLAKMPLNPNGKVDKPAL PFPDTAQLAIVAQKAAAASGDANAAPIEFTETQAAIRDIWLDVLPQQPATISPDDSFFDL GGHSILATRMIFELRKKLMVEIPLGLIFKSPSIAGFALEVDKLKKGGEVEFHGENESDEQ EQAAVDYYNDAKTLIADAKLVASSYPSHSGKLDASAPVKVFLTGGTGFLGSFLLRDLLER SQNIHVFAHVRAKTVEAGLDRLRNSSEAYGIWKDEWASRITPIIGDLEKADFGLSKEQFS QLTDEVDVIIHNGALVHWVYPYSTLRGPNVLGSINVMNLALTGKAKIFNFVSSTSAVDTE HFNKLSADLVEEGKAGVPESDDLMGSSVGLGNGYGQSKWVAEHVIREAGARGLTGTIIRP GYVVGDSKTGATNTDDFLVRMIKGCIQLGEIPNIHNSVNMVPVDHVARVVTAASFWPKQP SGVVVAHVTSQPRTRFNEFLQTLQKYGYKVSVEDYVTWRLALEKFVVEDSQDSALYPLLH FVLDDLPQSTKAPELDDSNARSALSRDAEWTGVDLSAGKGVDEAQMGIYLAYLVAVGFLD APQSKVELALPKVELSEQTLDKLKSVGGRGGNK*
Legend and notes 
Lengths
The length, in codons, of coding sequences includes the stop codon, hence it is one unit longer than the protein length.
Genomic environment map
Click on the symbol of an element or a family to go to its corresponding page. Colors in the lane "protein encoding genes" indicate strandedness: shades of blue for direct orientation, shades of red for reverse orientation. Colors in the lane "protein family" are arbitrarly chosen in such a way that different protein families have different colors in the map.
Protein domain map
Domains are extracted from SwissProt files. Click on the symbol of a domain to extract the domain sequence.
Genemark image and list
Genemark computation of protein-coding potential of DNA was made from 1000 nucleotides upstream the open reading frame to 300 nucleotides downstream. Thus the open reading frame protein-coding potential appears on frame #3.
Sequences
| Color | Nucleotide sequence and Coding sequence | Predicted translation product |
| RED | start and stop codons | Initial methionine and sequence end |
| BLUE | coding sequence | protein sequence |
| grey | non-coding sequence (upstream, downstream or intron) | |
| grey | donor and acceptor splicing sites |
Home
URL: http://www.genolevures.org/elt/YALI/YALI0E06457p