Element type: CDS
Element length: 4158 nucleotides,
on sense strand of
Klla0B: 805915..810072.
Other names:
KLLA-ORF9101
Coding sequence: 1386 codons.
Element length: 4158 nucleotides,
on sense strand of
Klla0B: 805915..810072.
Other names:
KLLA-ORF9101
Coding sequence: 1386 codons.
Database cross references:
EMBL: CR382122
GeneID: 2897319
HOGENOM: Q6CVV0
Orthologs by synteny: ZYRO0C16566g SAKL0B08030g KLTH0F10384g ERGO0D01364g
EMBL: CR382122
GeneID: 2897319
HOGENOM: Q6CVV0
Homologs and Orthologs
Homologs in protein families: GL3R2044 GL3R2044.F1 GL3R2044.N1Orthologs by synteny: ZYRO0C16566g SAKL0B08030g KLTH0F10384g ERGO0D01364g
Protein domain map
Database cross references:
Gene3D: G3DSA:1.10.1200.10
Gene3D: G3DSA:3.40.50.720
InterPro: IPR000873
InterPro: IPR006162
InterPro: IPR006163
InterPro: IPR009081
InterPro: IPR010071
InterPro: IPR010080
InterPro: IPR013120
InterPro: IPR014397
InterPro: IPR016040
KEGG: kla:KLLA0B09218g
PIRSF: PIRSF001617
PRINTS: PR00154
PROSITE: PS00012
PROSITE: PS00455
PROSITE: PS50075
Pfam: PF00501
Pfam: PF00550
Pfam: PF07993
RefSeq: XP_451939.1
TIGRFAMs: TIGR01733
TIGRFAMs: TIGR01746
TIGRFAMs: TIGR03443
UniProtKB/TrEMBL: Q6CVV0
UniprotKB: Q6CVV0_KLULA
Gene3D: G3DSA:1.10.1200.10
Gene3D: G3DSA:3.40.50.720
InterPro: IPR000873
InterPro: IPR006162
InterPro: IPR006163
InterPro: IPR009081
InterPro: IPR010071
InterPro: IPR010080
InterPro: IPR013120
InterPro: IPR014397
InterPro: IPR016040
KEGG: kla:KLLA0B09218g
PIRSF: PIRSF001617
PRINTS: PR00154
PROSITE: PS00012
PROSITE: PS00455
PROSITE: PS50075
Pfam: PF00501
Pfam: PF00550
Pfam: PF07993
RefSeq: XP_451939.1
TIGRFAMs: TIGR01733
TIGRFAMs: TIGR01746
TIGRFAMs: TIGR03443
UniProtKB/TrEMBL: Q6CVV0
UniprotKB: Q6CVV0_KLULA
Gene Ontology terms 
| GO:0048037 | cofactor binding |
| GO:0016874 | ligase activity |
| GO:0008152 | metabolic process |
| GO:0004043 | L-aminoadipate-semialdehyde dehydrogenase activity |
Sequence data 
>KLLA0B09218g.nt TTGGTTATCTGATTCTGTGTTTTGGAATTTTTCATATATATCCTCATATTCTTCCAACCC TTCCTTCACCTTCTTCAATACCTTATCAACTTCTTGTTGTAATTTCCTTTGTGACATGCT CTATTCTTCTTTAACTGATTATATTCGTCCACTGTTCTCTACTGTAATCTCATACGTCTT ATTTTCTTTTATAATATCCCTTTCAAAGCACTTATAGGAGATACGTACTATCTGTAATTT AAAAGCGAGTGATGTTCAATAAGCGTAAAGTTGTAAAAGACACGCGCGTTGGTTAATATA TTCAATTGATGATGTGCAGCTGTGCTACTTTTCCTTATTCTTTCTATATTCGGTTTCTGC CAATTTGAAGTTTTCAATATCTGATCAACGCATCACCAACGTAGGGTAACACTAACCAGG TACTACATATGTCTAACTACTGTCGAATGATGAGAAGAAATACCAAATTAGGCCCGATTA CCGGGATATTACTCATTGGCGCTACGATATTTACGCATTTAGCAGGGTTACTGACGTACA AAGAGTGTATATGTAATTTCAGCCTTTGTTTCAACGCAATGTTAGCTACCCGTGTATAAT ATATTTTGATATACATAAATCGTTGCAGAAATATAAGAACTGTACAGTAAGTTTAGATTC AAATTGAAGTAGAACTGTTGAAGAGCCCTTATACGAGACAAGTGTACATATTCTGATAGC ACAATGAACAACTGTCGTTGATGAGGTAGTTTCCAGCGATGAGGTTACCTTCCAGGGCCG AAAATGAAAAAGTGAAAAAAAAAAAGTTGTAAAATCCACAGGAATTTATTGGAATTTAGA CTCATAGCATGAGGACCAGTCTTTATATAACAAGCTGGAAACTGGAAATTGGTCACAAAA GGCTATTAAGTTTGAAACAGTGACAAGCTGTAGGTTACTGTGTCGAATTACCCATTTTTT CTTTGTGTTAGTAACTTATTACCGAAGAGCATAGACGAGGATGTCTGCATTAAAGGACTG GGCTATTAAGTTGGATAACCCAACAATCAGCGTGTTACCTCATGATTTTTTAAGACCACA ACAGCAGCCTCTAGTTAAGCAAGAAAGTTTGTCTTTCCAATTACCGCAGTTAGAAGTTCC TCATGGTAGAGATCCATATACCATTATTTTGGCTGCTTGGGCCAGTATCATTTACAGATT GACTGGTGATGACGACATGGTGCTTTTGGTAAGAGGTGCCAAAGCTATAAGATTTACCAT TCAAGCTACTTGGTCGTTTACTGAATTATACGACGTCGTATCTAATGAATTGGAAACGGT CAAATCGTTGGAATCGGTTAATTTCGACGAACTATCAGAACATGTGAAGGCTCAAAATGA GCTAGAAGTATTACCACAATTTTTCCGTCTCGGATTCGTTGATCAAGAAGATTTCAGCTT AACCACTTATCAAAACTCGTTGTTGGATACCGTACTCACTTTGAACAGTTCAAACCAGTT GCAAATTGTCTACAATTCATTGCTTTATTCTAAGGATAGAATTACAATCTTGGTCGATCA GATTACTCAATTTGTATCGCATGTCTTAAAGGATGATACTACATCTATTACCAAGATAAC GTTAATCACTGAATTATCCAAGTCTTCTATTCCAGACCCAACCAAGAATTTGGGTTGGTG TGATTTCCGTGGTTGTATCCACGATATTTTCCAAGACAACGCCGAGAAGTTCCCAGAAAG AACATGTGTTGTTGAAACACCTGCCTCTGGCCAAAGCGAATCTCGTTTGTTCACCTATGA ACAGATAAATTATGATTCGAACATCATTGCGCACTATCTAATAAACACTGGGATTAAGAG AGGTGATATAGTCATGATTTACTCTTCTCGTGGTGTTGATTTGATGTGCTGTGTTATGGG TGTCTTGAAAGCTGGTGCTACTTTCTCCGTCATTGATCCTGCTTATCCACCTGCAAGACA AACAGTATATTTAGACGTGGCAAAGCCAAAGGGTTTGGTAGTCATTAGAGCAGCTGGCGA ATTAGACCAGTTCGTGGAGGACTTTATCGCCAAAGAATTGGAGGTCGTCTCCCGTATACC GTCTATTGCAATCCAGAATGATGGATCCATTGAAGGTGGTAAGCTACAAAACGAAGAGAA CGATTGTCTTGCCCCATATGAAGGTTTGAAGGATAAAAGAACAGGTGTTGTAGTCGGACC TGACAGTAACCCAACTCTATCATTCACTTCTGGTTCTGAAGGTATTCCAAAAGGTGTTCT AGGAAGACATTTTTCACTAGCGTACTACTTTGATTGGATGGCAAAGGAATTCAGTCTATC AGAAAATGATAAATTCACTATGCTCAGTGGTATAGCTCATGACCCAATTCAAAGAGATAT GTTCACCCCACTGTTCTTAGGTGCTCAGTTGCTTGTTCCAACTCAAGATGATATCGGAAC ACCAGGTCAATTAGCTTCATGGATGGCCAAATATGGGGCTACCGTCACACATTTGACTCC TGCTATGGGTCAGCTATTGGCTGCTCAAGCAACCACACCATTCCCAAAGTTGCATCATGC TTTCTTCGTTGGTGATATCTTGACTAAGAGAGACTGCTTGAGACTCCAAACTTTAGCCGA AAACGTTAATATTATTAACATGTATGGTACCACTGAAACACAACGTGCAGTCTCTTACTT CACTGTCAAATCAAGGTCTGAGGATCCACAGTTCCTACAAAAGTTGAAGGATGTCATACC TGCCGGCAAAGGTATGTATAATGTGCAACTTCTTGTTGTCAACAGACATGATAGAACTCA AATTTGTGGGGTAGGAGAAGTTGGTGAAATATATGTACGTGCTGGAGGCTTAGCTGCCGA ATACCGTGGTTTACCAGAGGCAAACAAAGAGAAATTTATCAACAACTGGTTCGTGGAAGA GGGCCATTGGAAATCCTTAGATAAGGATAATGGTGAACCTTGGAGGGAATTCTGGCTTGG GCCAAGAGATAGATTATACAGAACTGGTGATTTGGGCCGTTACTTACCAGATGGCAATGC TGAATGTTGTGGCCGTGCTGATGATCAAGTTAAGATTAGAGGTTTCAGAATTGAATTAGG GGAAATCGACACCCATATCTCCCAGTATCCTCTTGTCCGTGAAAACATCACATTAGTTCG TAACAACGGCGATGGCGAAAAGACTTTGATTACATTCATGGTGCCAAGATTTGATAAACC AGAAGAGCTATCAAAACTATCATCGGAAGTTCCAGAAATAGTATCTAAGGATCCAGTTGT CCGCGGTTTGATTGGTTATCGTCATTTAGTTAAGGAAATTAAGGAATTTTTGAAAAAGAG ATTAGCAAACTATGCCATTCCAACAGTGATTGTTGTATTAGATAAACTACCATTGAATCC AAATGGTAAGGTTGACAAACCCAAGTTACAATTCCCAACTGCTAAACAACTAAATCTCGT TGCGGAAAATTCTTCTGTCGAGATAGACGACTCAGAGTTCACTGAAACTGAAAGGGAGGT TAGAGACCTTTGGTTAGGTGTCTTACCTTCCAGACCCGCCACAATTTCTCCAGAAGACTC TTTCTTTGACCTTGGCGGTCACTCTATTCTTGCTACCAGAATGATTTTCGGATTGAGAAG CACATTGGAAGTCGAGCTTCCTCTAGGAACAATCTTCAAATATCCAACTATCAGAGCCTT TGCGGGAGAAGTTGACAGAGTGAAGAATTCATCATCTTCAGAAGGTGACGAGATCAAAAC AGCAGATTACGCCAATGACGCAAAGAAGCTTGTTGATTCAATGCTACCAACCGAATATCC ATCTCGTGAAGCTTTCGCTGATCCTGAATCTTTATCGGCTAAGAAAAATATAAACGTATT TGTAACAGGTGTTACTGGATTCTTGGGATCCTACATCCTAGCAGACCTCCTCAATCGCCC GACCTCTTCCTACAATATTAAGGTTTTTGCCCATGTCAGAGCTAAAACTGAGGCTGCTGG TTTTAACAGGTTAAAACAAGCTGGTATAACTTATGGTACTTGGTCAGATTCTTTCATAAA TAGAATTGAGGTTGTGTTAGGTGACCTTTCTAAGGAGAAGTTCGGTTTGCCAGAAGGCAC TTGGAGCAACTTGGTCAACGAAATTGACGTTATCATTCACAACGGTGCCTTGGTTCATTG GGTATATCCGTACTCAAAGCTCAGAGACCCTAATGTTGTTGCAACTGTCAATGTTATGTC TCTTGCCGCTTCAGGTAAGGCCAAATACTTTACGTTTGTTTCCTCTACTTCCACAATTGA TACCGAACATTACTTTTCATTATCTGATAAGTTAGTGTCGGAGGGAAAGTCTGGTATCCT AGAAGCTGACGACTTATCAGGATCTGCTGTCGGGTTAACTAGTGGATATGGTCAATCTAA ATGGGCCGCCGAATATATCATAAGAAGAGCGGGGGAGCGTGGTCTTCGCGGCTGCATTGT TAGACCAGGTTATGTTACCGGTGCCTCATCCAATGGGTCGTCCAATACTGATGATTTCTT GTTAAGATTCTTAAAGGGGGTGGTACAGTTGGGTCAAATCCCTAACATCAGCAACACAGT TAATATGGTACCTGTTGATCATGTAGCACGTGTTGTAACAGCCAGTGCTTTCAATCCTCC TAACGAACATGAGCTAGCTGTTGCACATGTAACGGGCCATCCGCGTATCCTATTCAAAGA TTATCTATACCAATTGAAGAAGTATGGCTACAACGTTGAAATTCAAGAATATGCAGACTG GAAGTTATCTCTTGAACATTCTGTAATCGCAAGAGGTGAAGATAATGCCTTGTATCCATT GTTACATATGGTATTGGATGGCTTAGCGGAGAACACCAGGGCTCCTGAATTAGATGATAC AAATGCGACTTCATCCTTGCAAAAAGATAAAAAATGGACAGGTGTTGACGTTTCTTCAGG GAAAGGAGCTACCCCAGAACAAATCGGTATTTATATTGCCTTTTTGAATAAGGTAGGCTT TTTGCCTCCTCCACCAACGACTGGTGAATTGAATTTACCTCAAATATCATTGTCTGAAGA GCAAATCAAGCTAGTTTCTTCAGGAGCTGGTGCTCGTAGTAGTTCCGCTGCTGCTTGAAA ACATTTAAGGGACAGTATACTTTTTAATATAAATATGGATGTATATAAACATCCGTAACT AAAAAGAAGTATGCATCTTTATGTATTTTATCCTGATATAAAATCAATTGTTGAATAAAA ACTGCAAATCTGCCGGAGTCAATCTATTAATTGCCGCCTCGTCCTGATTGATTGTTGCAT GAATCATGCTAGCCTTCTTTTCTTGAAGTTCGATAATTCTGGACTCTATGCTATCTTCAA TACAGAATCTTGTAATTTTCACTGGCCGGAATTGACCAATTCTATGGACTCTATCACC
>KLLA0B09218g.cds ATGTCTGCATTAAAGGACTGGGCTATTAAGTTGGATAACCCAACAATCAGCGTGTTACCT CATGATTTTTTAAGACCACAACAGCAGCCTCTAGTTAAGCAAGAAAGTTTGTCTTTCCAA TTACCGCAGTTAGAAGTTCCTCATGGTAGAGATCCATATACCATTATTTTGGCTGCTTGG GCCAGTATCATTTACAGATTGACTGGTGATGACGACATGGTGCTTTTGGTAAGAGGTGCC AAAGCTATAAGATTTACCATTCAAGCTACTTGGTCGTTTACTGAATTATACGACGTCGTA TCTAATGAATTGGAAACGGTCAAATCGTTGGAATCGGTTAATTTCGACGAACTATCAGAA CATGTGAAGGCTCAAAATGAGCTAGAAGTATTACCACAATTTTTCCGTCTCGGATTCGTT GATCAAGAAGATTTCAGCTTAACCACTTATCAAAACTCGTTGTTGGATACCGTACTCACT TTGAACAGTTCAAACCAGTTGCAAATTGTCTACAATTCATTGCTTTATTCTAAGGATAGA ATTACAATCTTGGTCGATCAGATTACTCAATTTGTATCGCATGTCTTAAAGGATGATACT ACATCTATTACCAAGATAACGTTAATCACTGAATTATCCAAGTCTTCTATTCCAGACCCA ACCAAGAATTTGGGTTGGTGTGATTTCCGTGGTTGTATCCACGATATTTTCCAAGACAAC GCCGAGAAGTTCCCAGAAAGAACATGTGTTGTTGAAACACCTGCCTCTGGCCAAAGCGAA TCTCGTTTGTTCACCTATGAACAGATAAATTATGATTCGAACATCATTGCGCACTATCTA ATAAACACTGGGATTAAGAGAGGTGATATAGTCATGATTTACTCTTCTCGTGGTGTTGAT TTGATGTGCTGTGTTATGGGTGTCTTGAAAGCTGGTGCTACTTTCTCCGTCATTGATCCT GCTTATCCACCTGCAAGACAAACAGTATATTTAGACGTGGCAAAGCCAAAGGGTTTGGTA GTCATTAGAGCAGCTGGCGAATTAGACCAGTTCGTGGAGGACTTTATCGCCAAAGAATTG GAGGTCGTCTCCCGTATACCGTCTATTGCAATCCAGAATGATGGATCCATTGAAGGTGGT AAGCTACAAAACGAAGAGAACGATTGTCTTGCCCCATATGAAGGTTTGAAGGATAAAAGA ACAGGTGTTGTAGTCGGACCTGACAGTAACCCAACTCTATCATTCACTTCTGGTTCTGAA GGTATTCCAAAAGGTGTTCTAGGAAGACATTTTTCACTAGCGTACTACTTTGATTGGATG GCAAAGGAATTCAGTCTATCAGAAAATGATAAATTCACTATGCTCAGTGGTATAGCTCAT GACCCAATTCAAAGAGATATGTTCACCCCACTGTTCTTAGGTGCTCAGTTGCTTGTTCCA ACTCAAGATGATATCGGAACACCAGGTCAATTAGCTTCATGGATGGCCAAATATGGGGCT ACCGTCACACATTTGACTCCTGCTATGGGTCAGCTATTGGCTGCTCAAGCAACCACACCA TTCCCAAAGTTGCATCATGCTTTCTTCGTTGGTGATATCTTGACTAAGAGAGACTGCTTG AGACTCCAAACTTTAGCCGAAAACGTTAATATTATTAACATGTATGGTACCACTGAAACA CAACGTGCAGTCTCTTACTTCACTGTCAAATCAAGGTCTGAGGATCCACAGTTCCTACAA AAGTTGAAGGATGTCATACCTGCCGGCAAAGGTATGTATAATGTGCAACTTCTTGTTGTC AACAGACATGATAGAACTCAAATTTGTGGGGTAGGAGAAGTTGGTGAAATATATGTACGT GCTGGAGGCTTAGCTGCCGAATACCGTGGTTTACCAGAGGCAAACAAAGAGAAATTTATC AACAACTGGTTCGTGGAAGAGGGCCATTGGAAATCCTTAGATAAGGATAATGGTGAACCT TGGAGGGAATTCTGGCTTGGGCCAAGAGATAGATTATACAGAACTGGTGATTTGGGCCGT TACTTACCAGATGGCAATGCTGAATGTTGTGGCCGTGCTGATGATCAAGTTAAGATTAGA GGTTTCAGAATTGAATTAGGGGAAATCGACACCCATATCTCCCAGTATCCTCTTGTCCGT GAAAACATCACATTAGTTCGTAACAACGGCGATGGCGAAAAGACTTTGATTACATTCATG GTGCCAAGATTTGATAAACCAGAAGAGCTATCAAAACTATCATCGGAAGTTCCAGAAATA GTATCTAAGGATCCAGTTGTCCGCGGTTTGATTGGTTATCGTCATTTAGTTAAGGAAATT AAGGAATTTTTGAAAAAGAGATTAGCAAACTATGCCATTCCAACAGTGATTGTTGTATTA GATAAACTACCATTGAATCCAAATGGTAAGGTTGACAAACCCAAGTTACAATTCCCAACT GCTAAACAACTAAATCTCGTTGCGGAAAATTCTTCTGTCGAGATAGACGACTCAGAGTTC ACTGAAACTGAAAGGGAGGTTAGAGACCTTTGGTTAGGTGTCTTACCTTCCAGACCCGCC ACAATTTCTCCAGAAGACTCTTTCTTTGACCTTGGCGGTCACTCTATTCTTGCTACCAGA ATGATTTTCGGATTGAGAAGCACATTGGAAGTCGAGCTTCCTCTAGGAACAATCTTCAAA TATCCAACTATCAGAGCCTTTGCGGGAGAAGTTGACAGAGTGAAGAATTCATCATCTTCA GAAGGTGACGAGATCAAAACAGCAGATTACGCCAATGACGCAAAGAAGCTTGTTGATTCA ATGCTACCAACCGAATATCCATCTCGTGAAGCTTTCGCTGATCCTGAATCTTTATCGGCT AAGAAAAATATAAACGTATTTGTAACAGGTGTTACTGGATTCTTGGGATCCTACATCCTA GCAGACCTCCTCAATCGCCCGACCTCTTCCTACAATATTAAGGTTTTTGCCCATGTCAGA GCTAAAACTGAGGCTGCTGGTTTTAACAGGTTAAAACAAGCTGGTATAACTTATGGTACT TGGTCAGATTCTTTCATAAATAGAATTGAGGTTGTGTTAGGTGACCTTTCTAAGGAGAAG TTCGGTTTGCCAGAAGGCACTTGGAGCAACTTGGTCAACGAAATTGACGTTATCATTCAC AACGGTGCCTTGGTTCATTGGGTATATCCGTACTCAAAGCTCAGAGACCCTAATGTTGTT GCAACTGTCAATGTTATGTCTCTTGCCGCTTCAGGTAAGGCCAAATACTTTACGTTTGTT TCCTCTACTTCCACAATTGATACCGAACATTACTTTTCATTATCTGATAAGTTAGTGTCG GAGGGAAAGTCTGGTATCCTAGAAGCTGACGACTTATCAGGATCTGCTGTCGGGTTAACT AGTGGATATGGTCAATCTAAATGGGCCGCCGAATATATCATAAGAAGAGCGGGGGAGCGT GGTCTTCGCGGCTGCATTGTTAGACCAGGTTATGTTACCGGTGCCTCATCCAATGGGTCG TCCAATACTGATGATTTCTTGTTAAGATTCTTAAAGGGGGTGGTACAGTTGGGTCAAATC CCTAACATCAGCAACACAGTTAATATGGTACCTGTTGATCATGTAGCACGTGTTGTAACA GCCAGTGCTTTCAATCCTCCTAACGAACATGAGCTAGCTGTTGCACATGTAACGGGCCAT CCGCGTATCCTATTCAAAGATTATCTATACCAATTGAAGAAGTATGGCTACAACGTTGAA ATTCAAGAATATGCAGACTGGAAGTTATCTCTTGAACATTCTGTAATCGCAAGAGGTGAA GATAATGCCTTGTATCCATTGTTACATATGGTATTGGATGGCTTAGCGGAGAACACCAGG GCTCCTGAATTAGATGATACAAATGCGACTTCATCCTTGCAAAAAGATAAAAAATGGACA GGTGTTGACGTTTCTTCAGGGAAAGGAGCTACCCCAGAACAAATCGGTATTTATATTGCC TTTTTGAATAAGGTAGGCTTTTTGCCTCCTCCACCAACGACTGGTGAATTGAATTTACCT CAAATATCATTGTCTGAAGAGCAAATCAAGCTAGTTTCTTCAGGAGCTGGTGCTCGTAGT AGTTCCGCTGCTGCTTGA
>KLLA0B09218g.aa MSALKDWAIKLDNPTISVLPHDFLRPQQQPLVKQESLSFQLPQLEVPHGRDPYTIILAAW ASIIYRLTGDDDMVLLVRGAKAIRFTIQATWSFTELYDVVSNELETVKSLESVNFDELSE HVKAQNELEVLPQFFRLGFVDQEDFSLTTYQNSLLDTVLTLNSSNQLQIVYNSLLYSKDR ITILVDQITQFVSHVLKDDTTSITKITLITELSKSSIPDPTKNLGWCDFRGCIHDIFQDN AEKFPERTCVVETPASGQSESRLFTYEQINYDSNIIAHYLINTGIKRGDIVMIYSSRGVD LMCCVMGVLKAGATFSVIDPAYPPARQTVYLDVAKPKGLVVIRAAGELDQFVEDFIAKEL EVVSRIPSIAIQNDGSIEGGKLQNEENDCLAPYEGLKDKRTGVVVGPDSNPTLSFTSGSE GIPKGVLGRHFSLAYYFDWMAKEFSLSENDKFTMLSGIAHDPIQRDMFTPLFLGAQLLVP TQDDIGTPGQLASWMAKYGATVTHLTPAMGQLLAAQATTPFPKLHHAFFVGDILTKRDCL RLQTLAENVNIINMYGTTETQRAVSYFTVKSRSEDPQFLQKLKDVIPAGKGMYNVQLLVV NRHDRTQICGVGEVGEIYVRAGGLAAEYRGLPEANKEKFINNWFVEEGHWKSLDKDNGEP WREFWLGPRDRLYRTGDLGRYLPDGNAECCGRADDQVKIRGFRIELGEIDTHISQYPLVR ENITLVRNNGDGEKTLITFMVPRFDKPEELSKLSSEVPEIVSKDPVVRGLIGYRHLVKEI KEFLKKRLANYAIPTVIVVLDKLPLNPNGKVDKPKLQFPTAKQLNLVAENSSVEIDDSEF TETEREVRDLWLGVLPSRPATISPEDSFFDLGGHSILATRMIFGLRSTLEVELPLGTIFK YPTIRAFAGEVDRVKNSSSSEGDEIKTADYANDAKKLVDSMLPTEYPSREAFADPESLSA KKNINVFVTGVTGFLGSYILADLLNRPTSSYNIKVFAHVRAKTEAAGFNRLKQAGITYGT WSDSFINRIEVVLGDLSKEKFGLPEGTWSNLVNEIDVIIHNGALVHWVYPYSKLRDPNVV ATVNVMSLAASGKAKYFTFVSSTSTIDTEHYFSLSDKLVSEGKSGILEADDLSGSAVGLT SGYGQSKWAAEYIIRRAGERGLRGCIVRPGYVTGASSNGSSNTDDFLLRFLKGVVQLGQI PNISNTVNMVPVDHVARVVTASAFNPPNEHELAVAHVTGHPRILFKDYLYQLKKYGYNVE IQEYADWKLSLEHSVIARGEDNALYPLLHMVLDGLAENTRAPELDDTNATSSLQKDKKWT GVDVSSGKGATPEQIGIYIAFLNKVGFLPPPPTTGELNLPQISLSEEQIKLVSSGAGARS SSAAA*
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/KLLA/KLLA0B09218p