KLLA0E19911g


weakly similar to uniprot|P34218 Saccharomyces cerevisiae YBL052C SAS3 Histone acetyltransferase catalytic subunit of NuA3 complex that acetylates histone H3, involved in transcriptional silencing

Genomic environment map

Element type: CDS
Element length: 2199 nucleotides,
on sense strand of
Klla0E: 1771778..1773976.
Other names:
KLLA-ORF3105
KLLA0E20009g
Coding sequence: 733 codons.

Computed results  

None available yet

Homologs and Orthologs

Homologs in protein families: GL3C0136 GL3C0136.F2 GL3C0136.N4
Orthologs by synteny: ZYRO0B02882g SAKL0F11946g KLTH0B04994g ERGO0C10164g

Protein KLLA0E19911p  


similar to uniprot|Q75BN5 Ashbya gossypii ACR236W ACR236Wp and weakly similar to YBL052C uniprot|P34218 Saccharomyces cerevisiae YBL052C SAS3 Histone acetyltransferase catalytic subunit of NuA3 complex that acetylates histone H3 involved in transcriptional silencing homolog of the mammalian MOZ proto-oncogene sas3 gcn5 double mutation confers lethality

Protein domain map

Protein length: 732 amino acids
Protein family: GL3C0136
Database cross references:
InterPro: IPR002717
InterPro: IPR011991
InterPro: IPR016181
UniProtKB/TrEMBL: Q6CMI7

Computed results for KLLA0E19911p  

Blastp Genolevures
Blastp Uniprot

Gene Ontology terms  

None available yet

Sequence data  


Nucleotide sequence    

>KLLA0E19911g.nt
AAGTATTTCGATACATTGGATTTCATGGTTCTATGTGGTAACTCATTGTCGGCCGTTGAT
TTCGGCAAGCTACCAAAGATTTTGAAAGCTCAAGGTGTTATTGCATCCATTTCTGTCCCT
GATCAGCATGAAGCCATACATTTACATCCAGCGCAACTTCTAGGATTCCAGATTACTCAA
TCTTGTCTAGCATCTCGTGCAGAAATCATTGAAATGTTGAACTTGGTGGCTGAAAAGAAG
ATCAAACTATGGGTTGAAACGGTTCCAATCAGTGAGGAAAATATCTCCACAGTGTTCAAA
AGAATGGAAAGCGGTGATGTTCGTTTCAGATTCACACTAACTGACTTTGATAAACAGTTT
GACCAATTCAAAGCCAAGAAATAGGCGTTGAACTGTATAAATTATATAGATGGTTGACAC
GTTGTTCATAGCTTAAGTCACTTATATATACATACTATGACATAAACGTCAAAATGGAAA
CACACATAAAATACAACCTACAATTTATACACATTGCAAGGAACGGCTTTCATAAACACC
AGAGGACGGTAAGGGTACAGTAAAGTGCATGAAATGCAGTCACTGTAGCCAAGGTTACCT
TTCCAGTAACCGAAAATTTCTCGAAGAAGAGCAACAAGATCATGGGAAATATTTGCTAAC
TGAGCTGGTATGAAAGATACAAAAAAATACAGATATCACGTGACCATCAAGAAACCGAAA
TTTTTGATGCAGCAGTAACATGGATCTGTATTGTTTTGCTTCATTTCATAGGAGAAAGAA
TGATATAGGCAACCGGTTTTTGTAAATGTAAGACCTAGATTGCTTGCTGTTAGTTTCGTT
TACTATAACTCGGACTTTGTGAGTTCTTGTGAGAATGTGTTTTTAGAATAGACATTCTTC
TCTTCTAAAACTAGTAAAGGTACTATCCTCTCTATTTGTTTACCTTATATTGAAAGAAGA
AATAATAATTCATCAAGTGGCAGTCATCGCATATTTAAGAATGACGACTTCTAAGCGAAA
TAGACTGCTGAAGGAACTTCTGATTGATGATAATATACATTCCAAAGTACAGGCTGATTT
ATGGGACGCTGGAGATGGTGGAGTACGACGGAAACGCACCAGAGATAGACATGACAAGTC
GTCGGATCATATAGGCTATAACGGTGCTGATGATTCTGGGGTGCAACCGGAGAAGAATAA
GGACAAGAAACTTAAAACGATTGTTATACCATCTGATTGGAATGAGATGAACAGCCATGT
GCAATTTTCAGACGATCGTAGAATTATTACTATCAGGTATAATCCGTTGAAGTTGCTTGA
TTTCAATCAAGTGTTGAACAGAGGCAGCGATCTCGACGTAAAAGTACCGTCAATTCCGCT
AAATGGCATTGACTTTGAGATATATGAAACTGAAAATTTGTTAACATCTCTTGATAACGA
TGCTCAGTTCCCTTATCGTGGCGCAATTGAAAATAAGCAGGATTATACAACTCATAGGAC
CATTCCTCGTGTCAAAGATAGAGAGTTTTTTCTAACTTTGCTGCGTAAGTCCCAAACAGC
AGCTCGTTTCAATGGTAACACACTCCTGGCATTTCCAAATGATGAAGCTCATAATCAAGA
TAAGAAACGGTTAAAGCCAACAGCTTTGATGCATTCTGCGAAGACAACCAACGTGGAATA
TGTTTATTTCCAAAATTATGAGATCAAAACTTGGTATAAGGCTCCCTACCCTGAAGAGTA
TAACAAGAACGAAATTATCTATATTTGCGACAAGTGTTTGAAATATATGAGTTCAAAGTA
TGTCTATTATAGGCATCAGTTGAAATGTGATTATATCCACCCGCCAGGAAACCAAATTTA
TAGAGATATGGACCAAGGGTTCGCCATTTGGGAAGTAGACGGAAGAGAGAACGTTATTTA
TTGTCAGAATTTATGTTTACTAGCGAAACTTTTTTTAAATTCGAAAACTTTGTATTATGA
CGTGGAACCCTTTATGTTTTACACCATAACAGTATGGGAGGACGAAGAATGGAAATTTGT
TGGATATTTTTCTAAGGAAAAGCTAAACTCAACTGGTTATAACCTAAGTTGTATTCTTAC
TTTACCACATTTTCAAAGGCGCGGTATCGGACATCTACTGATGGACTTTTCATATCTCTT
ATCAAGAAGGGAATTTAAACTAGGCACTCCCGAGAAACCTTTGAGTGATCTTGGTTTGGT
ATCTTATCGAATATACTGGAAAAATAAGATGGTGCAAACGCTTAATATGTTATTTGAAGA
ACTGGGTGATTCATTCGCTTGTACCATAGACGACTTGTCCAATCTAACCGGTATGAATCA
TTCGGATGTGATATTCGGCCTGGAACAGATTGGATGTCTATACAAATACAACGATGAAGC
CTCAGGTAAATGCAAATATGCAGTGAAAGTAGAAGATTGGGATATCTTGTGTCAGTTATT
TGAACAGTCTAGAGCGAAAATGAAATATACTTTGGACCCTTCCAGATTTGTTTGGAAGCA
TGTCATTTTCGGTCCTTCGTGTGGAATCAATGCCGTTGGAACCATGGTAGAAACAAATGT
TAGCCAGCAAAGAATTACGTCTGCCGCTGGTTCAACAGCTGCTGATCCATTCAAACAAAG
TATATCTGTTCTAACGAATTTTATGAGTGACGATTTGGCGGATCCAAGAACGATGGAAGA
AGCTGCAATGGAAAAGATTAAGCAACAAACTATTCCTGTATCCTTGTCTGATAAATCTTT
AGTTCGAGCATATACACTTCCAAGCAATATCAAGGAAAAAATCATTAAGGCAAGCAAAAT
AAAACCTGAATTCAAACAACTCAATACGAAGCTCGGGGGGACTATTCCAGCTCTCAATGA
AGGTACACCTTCTGGCGATGCTTCTGATGCCAAAACACTGATCAGCGGAGGTATGCACGA
TGATATAAATGGCGATGAGCAAGAAATTGAGGAAGAGTTTGAAGAGGCAGACGGTTTAGA
AGATGAAGGTTTCTCGCTAGATGATGCAGAAGCTGAGGAGTATTCAGATGATGATGAAGA
TGATGATCAAGTGCCACCGCCTCCAGAGGAAATAGCGACTCCTAGGGTCAGTAGATCTCT
AAGAAAACTCAGACAGCACAATCCCGTAGAAAATGAAGTTCAGCAAAGACCACAGAGAGT
CTTACGGAATAGAGTTTGAATATTAATTAAAGGATAACCTAATCATAGTAATGCGTGGCC
ATGACATGTGTTTATGAGAAGAAAACTGATAATAGTGTAATATCTAATATATGCATGTAT
ATATGTATATGATTGTAAGAATAGCGAAAATTAATGCCATCATTGATATAGCAGTAAAAT
GTAAATAACAAAACAACGTAATAGTACGCACTTTTCATTTAAGTGTTTATGCAAAAGGAG
CAGCCCGTGTCCCTTTGCTATAATAAACTGAATAGGGACATTATTATGACAAAAAATAAC
CATATGGTACAGTTCAAAT

Coding sequence    

>KLLA0E19911g.cds
ATGACGACTTCTAAGCGAAATAGACTGCTGAAGGAACTTCTGATTGATGATAATATACAT
TCCAAAGTACAGGCTGATTTATGGGACGCTGGAGATGGTGGAGTACGACGGAAACGCACC
AGAGATAGACATGACAAGTCGTCGGATCATATAGGCTATAACGGTGCTGATGATTCTGGG
GTGCAACCGGAGAAGAATAAGGACAAGAAACTTAAAACGATTGTTATACCATCTGATTGG
AATGAGATGAACAGCCATGTGCAATTTTCAGACGATCGTAGAATTATTACTATCAGGTAT
AATCCGTTGAAGTTGCTTGATTTCAATCAAGTGTTGAACAGAGGCAGCGATCTCGACGTA
AAAGTACCGTCAATTCCGCTAAATGGCATTGACTTTGAGATATATGAAACTGAAAATTTG
TTAACATCTCTTGATAACGATGCTCAGTTCCCTTATCGTGGCGCAATTGAAAATAAGCAG
GATTATACAACTCATAGGACCATTCCTCGTGTCAAAGATAGAGAGTTTTTTCTAACTTTG
CTGCGTAAGTCCCAAACAGCAGCTCGTTTCAATGGTAACACACTCCTGGCATTTCCAAAT
GATGAAGCTCATAATCAAGATAAGAAACGGTTAAAGCCAACAGCTTTGATGCATTCTGCG
AAGACAACCAACGTGGAATATGTTTATTTCCAAAATTATGAGATCAAAACTTGGTATAAG
GCTCCCTACCCTGAAGAGTATAACAAGAACGAAATTATCTATATTTGCGACAAGTGTTTG
AAATATATGAGTTCAAAGTATGTCTATTATAGGCATCAGTTGAAATGTGATTATATCCAC
CCGCCAGGAAACCAAATTTATAGAGATATGGACCAAGGGTTCGCCATTTGGGAAGTAGAC
GGAAGAGAGAACGTTATTTATTGTCAGAATTTATGTTTACTAGCGAAACTTTTTTTAAAT
TCGAAAACTTTGTATTATGACGTGGAACCCTTTATGTTTTACACCATAACAGTATGGGAG
GACGAAGAATGGAAATTTGTTGGATATTTTTCTAAGGAAAAGCTAAACTCAACTGGTTAT
AACCTAAGTTGTATTCTTACTTTACCACATTTTCAAAGGCGCGGTATCGGACATCTACTG
ATGGACTTTTCATATCTCTTATCAAGAAGGGAATTTAAACTAGGCACTCCCGAGAAACCT
TTGAGTGATCTTGGTTTGGTATCTTATCGAATATACTGGAAAAATAAGATGGTGCAAACG
CTTAATATGTTATTTGAAGAACTGGGTGATTCATTCGCTTGTACCATAGACGACTTGTCC
AATCTAACCGGTATGAATCATTCGGATGTGATATTCGGCCTGGAACAGATTGGATGTCTA
TACAAATACAACGATGAAGCCTCAGGTAAATGCAAATATGCAGTGAAAGTAGAAGATTGG
GATATCTTGTGTCAGTTATTTGAACAGTCTAGAGCGAAAATGAAATATACTTTGGACCCT
TCCAGATTTGTTTGGAAGCATGTCATTTTCGGTCCTTCGTGTGGAATCAATGCCGTTGGA
ACCATGGTAGAAACAAATGTTAGCCAGCAAAGAATTACGTCTGCCGCTGGTTCAACAGCT
GCTGATCCATTCAAACAAAGTATATCTGTTCTAACGAATTTTATGAGTGACGATTTGGCG
GATCCAAGAACGATGGAAGAAGCTGCAATGGAAAAGATTAAGCAACAAACTATTCCTGTA
TCCTTGTCTGATAAATCTTTAGTTCGAGCATATACACTTCCAAGCAATATCAAGGAAAAA
ATCATTAAGGCAAGCAAAATAAAACCTGAATTCAAACAACTCAATACGAAGCTCGGGGGG
ACTATTCCAGCTCTCAATGAAGGTACACCTTCTGGCGATGCTTCTGATGCCAAAACACTG
ATCAGCGGAGGTATGCACGATGATATAAATGGCGATGAGCAAGAAATTGAGGAAGAGTTT
GAAGAGGCAGACGGTTTAGAAGATGAAGGTTTCTCGCTAGATGATGCAGAAGCTGAGGAG
TATTCAGATGATGATGAAGATGATGATCAAGTGCCACCGCCTCCAGAGGAAATAGCGACT
CCTAGGGTCAGTAGATCTCTAAGAAAACTCAGACAGCACAATCCCGTAGAAAATGAAGTT
CAGCAAAGACCACAGAGAGTCTTACGGAATAGAGTTTGA

Predicted translation product    

>KLLA0E19911g.aa
MTTSKRNRLLKELLIDDNIHSKVQADLWDAGDGGVRRKRTRDRHDKSSDHIGYNGADDSG
VQPEKNKDKKLKTIVIPSDWNEMNSHVQFSDDRRIITIRYNPLKLLDFNQVLNRGSDLDV
KVPSIPLNGIDFEIYETENLLTSLDNDAQFPYRGAIENKQDYTTHRTIPRVKDREFFLTL
LRKSQTAARFNGNTLLAFPNDEAHNQDKKRLKPTALMHSAKTTNVEYVYFQNYEIKTWYK
APYPEEYNKNEIIYICDKCLKYMSSKYVYYRHQLKCDYIHPPGNQIYRDMDQGFAIWEVD
GRENVIYCQNLCLLAKLFLNSKTLYYDVEPFMFYTITVWEDEEWKFVGYFSKEKLNSTGY
NLSCILTLPHFQRRGIGHLLMDFSYLLSRREFKLGTPEKPLSDLGLVSYRIYWKNKMVQT
LNMLFEELGDSFACTIDDLSNLTGMNHSDVIFGLEQIGCLYKYNDEASGKCKYAVKVEDW
DILCQLFEQSRAKMKYTLDPSRFVWKHVIFGPSCGINAVGTMVETNVSQQRITSAAGSTA
ADPFKQSISVLTNFMSDDLADPRTMEEAAMEKIKQQTIPVSLSDKSLVRAYTLPSNIKEK
IIKASKIKPEFKQLNTKLGGTIPALNEGTPSGDASDAKTLISGGMHDDINGDEQEIEEEF
EEADGLEDEGFSLDDAEAEEYSDDDEDDDQVPPPPEEIATPRVSRSLRKLRQHNPVENEV
QQRPQRVLRNRV*




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
ColorNucleotide sequence and Coding sequencePredicted translation product
REDstart and stop codonsInitial methionine and sequence end
BLUEcoding sequenceprotein sequence
greynon-coding sequence (upstream, downstream or intron)
greydonor and acceptor splicing sites