KLTH0F07942g


similar to uniprot|P32501 Saccharomyces cerevisiae YDR211W GCD6 Catalytic epsilon subunit of the translation initiation factor eIF2B, the guanine-nucleotide exchange factor for eIF2

Genomic environment map

Element type: CDS
Element length: 2181 nucleotides,
on anti-sense strand of
Klth0F: complement(688360..690540).
Other names:
KLTH-ORF6723
Coding sequence: 727 codons.

Computed results  

None available yet

Homologs and Orthologs

Homologs in protein families: GL3C0213 GL3C0213.F1 GL3C0213.N2
Orthologs by synteny: ZYRO0A09284g SAKL0H13090g KLLA0A04235g ERGO0G06292g

Protein KLTH0F07942p  


similar to uniprot|P32501 Saccharomyces cerevisiae YDR211W GCD6 Catalytic epsilon subunit of the translation initiation factor eIF2B the guanine-nucleotide exchange factor for eIF2 activity subsequently regulated by phosphorylated eIF2 first identified as a negative regulator of GCN4 expression

Protein domain map

Protein length: 726 amino acids
Protein family: GL3C0213

Computed results for KLTH0F07942p  

Blastp Genolevures
Blastp Uniprot

Gene Ontology terms  

None available yet

Sequence data  


Nucleotide sequence    

>KLTH0F07942g.nt
CCAGCAGGGCCCTCCTCCTATGGGCCCACCTCAGGGCGGAGGGTACTACCAACAACAACA
GCAGCCTATGTACCAGCAGCAACCCCCACGTGAAGAAGGCAGCGGCTGCTGTGGCTGGTG
TATGAAGGCCTTGTGCTGCTGCTGTTTGTTTGAGCTATTGTGTGGCGATTAAAAAAACAC
TGGGTTCACATTAGCCTTGGACCGTCCGAACGGTAGTGTATTACTTGGCATAATAGTTAT
AAATATCTAGGGAAGAATTTATATAAGCAAAGAAATTTAATCTTCTTCTAGAGCCGAAAG
AGCGGGTTTGAGCTGGTCGCAAGTCTGCTCTGTCGCTCTGTCCAACATCCCCGCTGACTT
TGTGACCAGAGTTGGTGGTCCGCAAGTGAAAAGCCTACCCACAAACTATGCTTAGGTGCA
GTTTGGGTGTTGTTATTAGGTAACTCTCTAATGGCTTTGTGCATTACAACTTGAACACAT
CTCGCAACTATTTTTTAACAACACAATGTAAGCCCTCCCATGGGCCCATCTACATTAATG
TATGGAACTTTTCGTGATGTGTCCCTTAATAACTTCTTATTGATTACGTTGCCAATAAAC
AATGCCAAATTTTACAAACTCTACAGGTGTTGTATCCCTTTAGCACTCGTCTCTTTCGAA
AATGCTCGTGTAGCTCAGTGGTTAGAGCTTCGTGCTTATAGATGAACTCGGTTCTCCGAA
TCACTCTGTGAAATTGGCCTTTCAATAGGTCTTAAGCAACGCGACCGTCATGGGTTCGAA
CCCCATCTCGAGCACTTTCTATTCTTTTTTTCGTTTTTCACAGCTATTGAAGTTCGGGTA
ATACTTTTATAAAGATTTTTCACCTTTTATACAATTTCTATGCAAGCTAGGAGAAGATCC
GATGAGCAAAGTTTAGAATCATTGTTAACTTGCGTCACTTAGGCCCCATACAGCATCCGG
TGGTCTACTGTCGTTATCAGCCGTAATACCAGCGAGGAAAATGGCGGGTAAGAAGGGAAA
GACTCCCAAGAAATCCGTAGGTGGCGGTAAGAAGCCTGAGGTGGTGCAGGATGAGCGCTT
GCAAGCTATTGTGCTGACAGACTCGTTCGAAACGCGCTTTATGCCGTTGACCGCTGTCAA
ACCCCGGTGCTTGCTCCCCCTCGCTAATGTTCCGCTCATTGAGTATACACTAGAGTTTCT
CGCAAAGGCTGGCGCTAGCGAAGTGTACCTAGTCTGTGCCTCGCATGCAGATCAGGTGAG
TGCATACATTGAGACCTCGAAATGGAATATGCCGTGGTCCCCATTTCGTGTGTCTACTAT
CATGTCCCTAGAGTCGCGCTCCGTGGGTGACGCTATGCGTGATTTGGACAACCGAGGCGT
AATCACCGGCGACTTCATCTTAGTCAGTGGTGACTTAGTTACCAACATGGAATTTGACAA
AGCGCTCGAATTTCACCGCAAGAAGAAGGCCGAAGACAAGGACCACATTGTTACCATGTG
TCTCAGCAAGGCCAGCCAATTCTACAGAACGCGGTGCCACGAACCTGCCGCCTTTATACT
CGACAAGTCGAACAACCGCTGCCTCTACTATCAAGATATACCACTTGCAAGCTCTAAACA
CAAGACTTCGCTTGCGATTGACCCAGAACTACTGGAAGACGTTGATGAATTTACTTTGCG
TAATGATCTGATCGACTGTCACGTCGATATCTGCTCGCCCCTTGTGCCAGCCATTTTCCA
GGAGAATTTCGATTATCAGTACTTGAGAAGAGACTTCGTGAAAGGTGTGCTCACCAGCGA
CTTGCTTAAGAAGAGCATATACTCCTTCATCACTGACGAGTATGCGGCTCGTGTGGAAAG
CTGGCAGACGTACGACGCTATTTCCCAGGACTTCATTGCAAGGTGGTGTTACCCAATGGT
TTTGAATACAAATCTGTTGGATGATCAGACGTACTCCTACGAATCAGAACACATTTATAA
AGAAAAAGACGTGGTCTTGGCACAATCTTGCAAAATCGGCAAGCGCACTGCAATTGGGTC
TGGCTCTAAAATTGGCGAGGGCACCAAGATTCAAAATTCCGTCATCGGCAGAAACTGCTA
CATTGGCGAGAACATTATTATAAGGGATAGTTTCATTTGGGATAACACAGTAATTGGCGC
CAAATCCCTGATAGAGCACTCACTAGTTGCATCAGGTGTCAAAATTGGATCTAACGTGAT
CTTGAATGACGGCTGTGTTATCGGTTTCAACGTTATGGTAGATGACAACATGGAAATTCC
AATGGGTACTAGAATATCAGAGACACCTGTTCGGAAGAAGGCCACTCAATTTTCCGATAG
CGCCTCCTACGAAGATGACGAGACTGCTAAACAAGATGAAAGTACCAAGGTCATTTCCCC
TGCATACGAGCTGGTGGGCACAGACGGTGTCGGTTATGTTTACGACAGTGACAAGGCCGA
GGACGATGATGATGCCAGCGTCATTGATGTGGTAACGAACTCTTTGACATACAAGTTTGA
TGACTTGTATTTGAGTGACGACTCCATTTCGTCTACAGCTGGAAAGCGCAAGAAGAAGAG
GTCAATGTCTACAAACAGTATCTATACCGACCGCGAGGGAGATGACTACGAGGATGACGA
AGAAGACGAAGAAGACTTCGCAGTTGAAGCCATCGCCACTGTAGAAAGAGCTATGGAAAA
CAACCACGACCTGGACACCGCGCTGCTGGAGTTGAACACATTAAGAATGAGTATTAACGT
CAGCTACCACGAAGTGAGGTCTGCCACTGTTGTTGCATTATTAAGAAGGGTATACCATTT
CATTGCCACGCAAACTCTGGGCGCAAAAGACGCCGTTCAGAAGGTTTTCAGCCAATGGGG
TATGATGTTTCAACGCCAAGCTTTTGACCAAGAGGAATTTGTGGACTTGTCCAACTTACT
GCTAGAGAAGGTTGTGGCGCAAGGGTTTGAGAAGCCTGAATTCATTCTTTTCAGCGCACT
GACATGCCTTTACGATTTGGATATCCTAGACGAAGACGCGGTCTACACTTGGTGGGATCA
GGTCTCGCAAGAGGAGAAGTATAGCCAGGCGAAGACTTTGACTGCGAAATGGATTGAGTG
GTTGAAGACGGCAGATGAGGAATCCTCGGAAGAGGAATCCGAAGAAAGCGAGAGCGAGTG
AACCATCTACTTTCTTTTAGTTGAACGCTAAGGCTTAACTGCCGGCAGTGTGCCCCATCC
GATATACAACAATTGGAGGCGCTTTGATCTCTTGGATCTCTCTCTTTCTATTTCAAACAG
CAGCTCCGCCATCTTTCAAACTGGCCAGCTATCTTCCGCGCTTAGATTATCGGCGAGCGC
TCATGTTACCCGGTATATCACGTGTTTGTATTCTTGAAAATTTCGTCTCGCCTCAGGACG
GTTTTTGAAACTGAAATAAGAAAATTATTTATCAAGGAGCACCAAACCAGAGCCAAGCAC
A

Coding sequence    

>KLTH0F07942g.cds
ATGGCGGGTAAGAAGGGAAAGACTCCCAAGAAATCCGTAGGTGGCGGTAAGAAGCCTGAG
GTGGTGCAGGATGAGCGCTTGCAAGCTATTGTGCTGACAGACTCGTTCGAAACGCGCTTT
ATGCCGTTGACCGCTGTCAAACCCCGGTGCTTGCTCCCCCTCGCTAATGTTCCGCTCATT
GAGTATACACTAGAGTTTCTCGCAAAGGCTGGCGCTAGCGAAGTGTACCTAGTCTGTGCC
TCGCATGCAGATCAGGTGAGTGCATACATTGAGACCTCGAAATGGAATATGCCGTGGTCC
CCATTTCGTGTGTCTACTATCATGTCCCTAGAGTCGCGCTCCGTGGGTGACGCTATGCGT
GATTTGGACAACCGAGGCGTAATCACCGGCGACTTCATCTTAGTCAGTGGTGACTTAGTT
ACCAACATGGAATTTGACAAAGCGCTCGAATTTCACCGCAAGAAGAAGGCCGAAGACAAG
GACCACATTGTTACCATGTGTCTCAGCAAGGCCAGCCAATTCTACAGAACGCGGTGCCAC
GAACCTGCCGCCTTTATACTCGACAAGTCGAACAACCGCTGCCTCTACTATCAAGATATA
CCACTTGCAAGCTCTAAACACAAGACTTCGCTTGCGATTGACCCAGAACTACTGGAAGAC
GTTGATGAATTTACTTTGCGTAATGATCTGATCGACTGTCACGTCGATATCTGCTCGCCC
CTTGTGCCAGCCATTTTCCAGGAGAATTTCGATTATCAGTACTTGAGAAGAGACTTCGTG
AAAGGTGTGCTCACCAGCGACTTGCTTAAGAAGAGCATATACTCCTTCATCACTGACGAG
TATGCGGCTCGTGTGGAAAGCTGGCAGACGTACGACGCTATTTCCCAGGACTTCATTGCA
AGGTGGTGTTACCCAATGGTTTTGAATACAAATCTGTTGGATGATCAGACGTACTCCTAC
GAATCAGAACACATTTATAAAGAAAAAGACGTGGTCTTGGCACAATCTTGCAAAATCGGC
AAGCGCACTGCAATTGGGTCTGGCTCTAAAATTGGCGAGGGCACCAAGATTCAAAATTCC
GTCATCGGCAGAAACTGCTACATTGGCGAGAACATTATTATAAGGGATAGTTTCATTTGG
GATAACACAGTAATTGGCGCCAAATCCCTGATAGAGCACTCACTAGTTGCATCAGGTGTC
AAAATTGGATCTAACGTGATCTTGAATGACGGCTGTGTTATCGGTTTCAACGTTATGGTA
GATGACAACATGGAAATTCCAATGGGTACTAGAATATCAGAGACACCTGTTCGGAAGAAG
GCCACTCAATTTTCCGATAGCGCCTCCTACGAAGATGACGAGACTGCTAAACAAGATGAA
AGTACCAAGGTCATTTCCCCTGCATACGAGCTGGTGGGCACAGACGGTGTCGGTTATGTT
TACGACAGTGACAAGGCCGAGGACGATGATGATGCCAGCGTCATTGATGTGGTAACGAAC
TCTTTGACATACAAGTTTGATGACTTGTATTTGAGTGACGACTCCATTTCGTCTACAGCT
GGAAAGCGCAAGAAGAAGAGGTCAATGTCTACAAACAGTATCTATACCGACCGCGAGGGA
GATGACTACGAGGATGACGAAGAAGACGAAGAAGACTTCGCAGTTGAAGCCATCGCCACT
GTAGAAAGAGCTATGGAAAACAACCACGACCTGGACACCGCGCTGCTGGAGTTGAACACA
TTAAGAATGAGTATTAACGTCAGCTACCACGAAGTGAGGTCTGCCACTGTTGTTGCATTA
TTAAGAAGGGTATACCATTTCATTGCCACGCAAACTCTGGGCGCAAAAGACGCCGTTCAG
AAGGTTTTCAGCCAATGGGGTATGATGTTTCAACGCCAAGCTTTTGACCAAGAGGAATTT
GTGGACTTGTCCAACTTACTGCTAGAGAAGGTTGTGGCGCAAGGGTTTGAGAAGCCTGAA
TTCATTCTTTTCAGCGCACTGACATGCCTTTACGATTTGGATATCCTAGACGAAGACGCG
GTCTACACTTGGTGGGATCAGGTCTCGCAAGAGGAGAAGTATAGCCAGGCGAAGACTTTG
ACTGCGAAATGGATTGAGTGGTTGAAGACGGCAGATGAGGAATCCTCGGAAGAGGAATCC
GAAGAAAGCGAGAGCGAGTGA

Predicted translation product    

>KLTH0F07942g.aa
MAGKKGKTPKKSVGGGKKPEVVQDERLQAIVLTDSFETRFMPLTAVKPRCLLPLANVPLI
EYTLEFLAKAGASEVYLVCASHADQVSAYIETSKWNMPWSPFRVSTIMSLESRSVGDAMR
DLDNRGVITGDFILVSGDLVTNMEFDKALEFHRKKKAEDKDHIVTMCLSKASQFYRTRCH
EPAAFILDKSNNRCLYYQDIPLASSKHKTSLAIDPELLEDVDEFTLRNDLIDCHVDICSP
LVPAIFQENFDYQYLRRDFVKGVLTSDLLKKSIYSFITDEYAARVESWQTYDAISQDFIA
RWCYPMVLNTNLLDDQTYSYESEHIYKEKDVVLAQSCKIGKRTAIGSGSKIGEGTKIQNS
VIGRNCYIGENIIIRDSFIWDNTVIGAKSLIEHSLVASGVKIGSNVILNDGCVIGFNVMV
DDNMEIPMGTRISETPVRKKATQFSDSASYEDDETAKQDESTKVISPAYELVGTDGVGYV
YDSDKAEDDDDASVIDVVTNSLTYKFDDLYLSDDSISSTAGKRKKKRSMSTNSIYTDREG
DDYEDDEEDEEDFAVEAIATVERAMENNHDLDTALLELNTLRMSINVSYHEVRSATVVAL
LRRVYHFIATQTLGAKDAVQKVFSQWGMMFQRQAFDQEEFVDLSNLLLEKVVAQGFEKPE
FILFSALTCLYDLDILDEDAVYTWWDQVSQEEKYSQAKTLTAKWIEWLKTADEESSEEES
EESESE*




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