Definition Clostridium perfringens str. 13, complete genome.
Accession NC_003366
Length 3,031,430

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The map label for this gene is nagJ [H]

Identifier: 18310028

GI number: 18310028

Start: 1247325

End: 1253222

Strand: Direct

Name: nagJ [H]

Synonym: CPE1046

Alternate gene names: 18310028

Gene position: 1247325-1253222 (Clockwise)

Preceding gene: 18310027

Following gene: 18310029

Centisome position: 41.15

GC content: 31.5

Gene sequence:

>5898_bases
ATGAAAAGAAAGATGATTATTAAAAAATTAAGTGTTTTAACTTTAGGTACTATTTTTACATCTAATATTCTTTTACCTTC
AACATTAATTTATGCTTTTCCAACAGAAGGGATAAATCATAATATCGAAAAAGAGGAGAAAAAAGAAATAAAGGAAAGTA
ATTATTCTCAAATTGGAGGAGTAGAAAATTTTACTCAAAATGAAAACGATGTATTATTGGATTTAAGTACAGGAGAAAAG
ATTAGAATATCATTCTTGAAAGAGGATGTTTTAAGAATTTATATGGATCCTACAGGAGAATTTCAAGAGGAGCCAACTCC
AAATAGTAAGGACCATATTACTAAAATAATTAATAAGACTGAGGAAGAATATGAAAATCCTACTCCAATAGTGGAAGATG
GAGAAATAATAAAAATATCTACAAGTGCTGTTCAGTTAAGAATAGAAAAATCAACTGGAAAAATGGAGCTTTTTAATAAA
TTAAATAATAAAACTGTATGGAAGGAAGCTGAACCTTTAAAGCATAGCGCAGACGGTACTATTCAGACTCTTGAGTCAAA
TGAAGATGAATATTTCTATGGTGGAGGAATGCAAAATGGTAGGTTCTCTCATAAGGGTAAAAAGATAAATATTAAGAATG
AAAATAATTGGGTAGATGGTGGTGTTGCAAGTCCAAATCCATTTTATTTTTCAACTAATGGGTATGGAGTTATGAGACAT
ACATTTAAACCTGGTGAGTATGATTTTGAAGCTTCTGCATCAGGTAAAGTTACAACAAAACATGAAGAGAATCGTTTTGA
TGCTTATTATTTTATTGATGAAAAACCAACAAATATAATAGATAAGTTCACAGAGTTAACAGGAGAACCAGTTTTGTTAC
CTGAGTATGGATTTTATTTAGGACATGCAAACTGTTATTCTCGTGACTGGATAAATGATGAAACAGGACAAGAGTCTCAA
ACACAAAAGCCTGGTTTTGATAGACAAGAGAGTTTAATGGTTGATGCTAAAAAAGTAGTTGATGACCATGTTTCTAATGA
TACACCACTTGGATGGTTTTTACCTAATGATGGTTATGGTTGTGGATATGGACGCGAAGAAAGTATAGATGGAAACATAG
CTAATTTAAAAGAATTTGTTGATTATGCAAGAGGCTTTGGAATTCAAACAGGACTTTGGACACAGAGTTCTTTAAAACCT
ACAGGAAATCAAGAGGCTTATCTTGAGCGTGATATAGATAAGGAAGTTGGGGTTGCTGGCACAAATGGAGTTAAAACAGA
TGTGGCATGGGTTGGAGCAGGATATTCATTTGCACTTAACTCAGTTAGACAAGCTGCTGAAGGAATAATAAATAATTCAA
AAGATAAGGCAAGGCCATTTATAGTAAGTTTAGATGGATGGGCTGGAACTCAGCGTTATGCAAGTATTTGGTCAGGAGAT
CAATATGGTGGAGAATGGGAATATATAAGATTTCATATACCAACATATATAGGGGCTGGTCTTTCAGGTCAACCTAATGT
AGGATCTGATATGGATGGAATATTTGGAGGAAGTAAATTAGTACAAACTAGAGATTTTCAATGGAAGGCATTTACTCCAG
TACAAATAGATATGGATGGATGGGGAGCAAATGCTAAATATCCATATGTGTTTGGAGAGCCTTATACTTCAATAAATAGA
ATGTATTTAAAATTAAAAGCAGAAATGATGCCATATAACTATAGTATAGCTAATGAAGCTACTAATAATGGAGTTCCTAT
GATAAGAGCTATGATGCTTGAATATCCAGAAGAATATACTTATGGAACTGATACGCAGTATCAATATATGTGGGGACCTA
ATATGTTAGTTGCTCCTATATATCAAAATACAGATGGTGATTCAGAAGGTAATGATATAAGAAATAATATTTATCTTCCA
GATGAAGAGCAAATTTGGATTGATTATTTTACTGGAAAGCAATATAGGGGTGGTGGAGTATTAAATAACTTTGAAGCTCC
TTTATGGAAATTGCCTATCTTTGTTAAGAATGGAGCAATAATTCCAATGACTAGTGAAAATAATAATCCAGAAGAAAGAG
ATGATTCCCATCGTATTTATGAAGTATATCCAAGTGGAGATACAAGTTTTGAGGTTTATGAGGATGATGGTTTAACAACT
GATTATAAGGAAGGAAAATCAGCTAAAACTATGGTAACTTCTAGTGCTCCAAAGACTGGAAAAGGAACTGCTGTTATTAA
TGTAGGATTATTAGAAGGAGACTATAATGGAATAGTTTTAGATAGATCAACAGAGTTTATAGTTACTGTAAGTGAAAAAC
CAAGCAATTTAGGTGTTACTTTAGGTGGTAATGATGTTCAGCTAACAGAAGCGCAAAGTTTAGAAGAATTTGAAAAGGGA
AGCAATATGTATTTCTATGATGAAACTCCAAATCTTAATAAATATGCTACTGAAGGTTCAGAATTTGCAAAGGTTGAAAT
AACTTCAACACCTAAGCTTCGTGTAAAAGTTGATAAAACAAATGTAAAAGAAAATGAAGTTAAATTAACCATTGATGGAT
TTAATAATACTCAAGATATTGATAAAAATGAAGTGAATGAAAGTTTGGGAGTTCCAGGTGATTTTAGAGCACCAGAAGAA
GATATAACTCCTGAATCTATAAAATTAACTTGGGATGAAGTTGAAGGTGCTACAACTTATGATGTTGAAATTGATGGAAC
TATATTTAAAAATATCAAAAATACTGAGTATTTAGATACAGGATTGAATTATGATACTGAATATAGTTATCGTGTAAGAA
GTGTAAATAAGGATGGACATTCTAATTGGAGTGAATTGATAAAGGTAAAAACTGATTTGGATCCATACAGAAATGTACCT
AAGGATATGAAAACAGAGTGGAAATGGGGACAATATAGCAGTGATGAACCAAGTAAGGCTGTTGATGGAGATGATTCATC
ACAATTCCACTCAAAAGATAGTGCTATAGATAAGCCATTTATAATTGATATGCAAAAGGCATATACAATAGAGAAATTAG
AATTATTATTTAGAAAAAATGGTAATGGTTCTGTTAAGAGGGCAGAAATATATAGTAGCTTAGATGGAATAACTTATGAA
AAAGTATTTAGTAATGCTGAAGGTTCAGATATAGCACCATGGACTACTGATGGAGAAGTTAAAACTATAAACTTTAATAA
GCCAATAAAGGCTCGTTACTTTAAGATTGTAACTAAGGAGTCTATAGGAAACTTCTTGGCTATGAGAGAGTTTAGACCTT
ATAAGGTTGATGGAACTAATGGACAGATTGTAGGAGATTGGAATAATAGTGGTTCAATAGAAGAAGGAGATTTAGTATTC
CTAGAAAACTATGCCGGATTAACTACTGCTGACTCTGATTGGGGATATGTATCAATGGCAGATTTAAATAACAATGGTTT
GATTGATGCTTACGATATATCTTATGTTTCTAGTAAATTAGAAGGTGGAGTAAAACCTTCAGAAGGATTAGAACTTCAAG
GAGAGATGATGCTTGTACCAAGTAAATCTGAAATTAAATCTGGGGAAACATTTACTATTGATTTAGTAGGAACAGGCCTT
TCAGATATTAATGCATTTAGTGCAGAAATTCCTTTAGATTCTACTAAGTATGAGTATATTAAGACTGAAGGAACTGTTTC
CACTTCTGGGATGAAAAATCTTTCAAAGGCAAGGGTTCACACAGATAATACCCAACATGTTTATGTGAATTTTACTAATA
TAGGAGATAATGTAAAAGTAAATGGAACAGATACAATTGCTAGAATAACATTAAAAGCTAAACAAAATATTACCTGGGAT
ATGGAGATTAGCAATGCTTTATTAGTAGATAGCAAGTTAAATTCTAAGTCAGCTATTGCTAAAATTGTTGATTTAGAAAG
TGAATTACCATCAGGAAGACCAACTAGTAGTAAGGTTTCAAAAGAAAACATTACTGTAAGTGGGGACTCAAGTCAATTAC
AAGCAGGAATGGGATTAGATAAATTAATAGATGGAACAACAAGTAGTGATGATAGTTCACGTATGGATTTAAAATGGATA
TTTACTTCTGATCAACAAGATAAGGGAACTCTTCCTTTTGAAATGACCTTTGAATTTAATGAACCAAAAACTTTAGAAAA
TTTCACTATATACAATAGAATGAATTCAAATGGAACCATAAATATTGCAGCCATGAAAAAGGTTAAGGCTGTTGGATATT
TAAATGGAGAAGAATTTGATTTAGGAGAAAAAGCTAATATTACATCGGCTACAACTGTTTACGAATTAGGTGGACAAGAA
TTTGATAAGATTGTAATTACTGCTTTAGATTCTCATAAAGATAAGAATACTTTAGCTATAAATGAAATTGAATTTTATGA
GAAGAGTGAAGTGGAAACAACAGGAATAAGTTTCACAGAAAATACTCCAGAATCAGTATATTTAAATAGAATTACTCCTA
TTTTTGCAGAAGTTACACCTGATAATGCAAATAACTTAAACTATAGATTAGCCTCAGAAAACCCTGATATTTTGCAAGTT
TTACGTGTAGATAGAGAGGATAAAGCAACTTATTATTTACGTGGATTAAATCCTGGAGTAGCAAAATTAGTTGCAACTAC
TGCTGAGGGAAATCATAAAGTTGAAAAAGAAATAGTTGTTTTAGATGGAATTGATAAAACTTTATTAACTAAAGCCATAG
AAGAAGCTAAATCCTATGAATCTTTAAGTGAGATATATACTATTGAATCTTATGAAGCTTTACTTGAAGCTATTAAACAT
GCTGAAGATGTATTAGAAAATAGTTCAAGTGAAAAAGAAATTGGAGATGCAATAATAAATTTAAGAAGCAAAATTTCAAA
GTTAGAAGAACGTGAAACTGTAGAGGAGGATAAAATAGATTCTAGCAAGTTAGAAGCTATTTATGCAACTAGTGAAGCAG
ATAGAGATTATAAAGAGAATGCTGTAGATGGAGATGAAAATACCATTTGGCACTCAGCTTATCAAGCTGCAGATAAACTT
CCAGTATCTATAACAATTAAGTTAGATAAAGCTTATGATCTTAATCAAATAGACTATTTACCAAGACAAAATAGTAGAAA
TGGTCATGTTACTGAGTATAAGATTGAAACAAGTTTAGATAATGAAAATTGGACTGAGGTAAGAACAGGGAACCTAGAAG
TTAATGAAGCTGGTAATGCTTTGGCTAATAGAGGATATAATCCTATAAGATTTAATACTATTAATGCTCAATATGTAAGA
TTTACAGCCATTAAAACTTTAGGAGATACAAATAATAAGTATGCAAGTGCAGCTGAATTAGTATTCTACGGAAAAGAGGG
GAAAGTAAGTGCTGAGTCTATTACATTAGAAAAGACAGAGTTAAAATTAAATGTTAATGAATCAGAGCAACTAAAAGCTG
TATTAAATCCTATAGAAAGTAATGATACTATTACTTGGACTTCAAGTGATGAGAGCATTGCTAAAGTAGATGAAAATGGA
GTAATTACTGGAATAGGCAAAGGAGAAGCTTTAATCACTGCTACAATACCTAATGGAAAATCTGCTACTTCCAAGGTTAT
AGTAGAAGATAGTGTTTCTGAGGAAATAATAGTTAGTCCAGTAAGAGACTTTAAAGCTTCTCAGGTTAATAAAAAAGATG
TAACTGTAACATGGACTACTCCAGAATCAACTAATGGATTAGAAGGATATATACTCTATAGAGATGGAAAGAAAGTAGCT
AAGTTAGAAGCGGATGAAACTTCATATATGTTTAATAAATTAAACAGACATACAATTTATAATTTTAAGATTGCAACTAA
GTATTCAAATGGAAAAATTTCAGAAAAGTCATCAATAACTATTAGAACAGCAAGATAG

Upstream 100 bases:

>100_bases
TGAATAAACCAATAATGAATTTATTAATCTTTATTATTCTTTAAGTAGATATTTATTTTCCTTTTGGAATTAAATAATAT
AGAAATTTAGGGGGAAAAAT

Downstream 100 bases:

>100_bases
ATATTATCAAGTAATAATTATTCAAGGAGGATAAGTATAATTTTATTACTCCTTGAATATAATGATACACATTTTAGGGA
GAGGGTTAAATTATGAGAAA

Product: hypothetical protein

Products: NA

Alternate protein names: Beta-N-acetylhexosaminidase; Beta-hexosaminidase; GH84; Hexosaminidase B; N-acetyl-beta-glucosaminidase [H]

Number of amino acids: Translated: 1965; Mature: 1965

Protein sequence:

>1965_residues
MKRKMIIKKLSVLTLGTIFTSNILLPSTLIYAFPTEGINHNIEKEEKKEIKESNYSQIGGVENFTQNENDVLLDLSTGEK
IRISFLKEDVLRIYMDPTGEFQEEPTPNSKDHITKIINKTEEEYENPTPIVEDGEIIKISTSAVQLRIEKSTGKMELFNK
LNNKTVWKEAEPLKHSADGTIQTLESNEDEYFYGGGMQNGRFSHKGKKINIKNENNWVDGGVASPNPFYFSTNGYGVMRH
TFKPGEYDFEASASGKVTTKHEENRFDAYYFIDEKPTNIIDKFTELTGEPVLLPEYGFYLGHANCYSRDWINDETGQESQ
TQKPGFDRQESLMVDAKKVVDDHVSNDTPLGWFLPNDGYGCGYGREESIDGNIANLKEFVDYARGFGIQTGLWTQSSLKP
TGNQEAYLERDIDKEVGVAGTNGVKTDVAWVGAGYSFALNSVRQAAEGIINNSKDKARPFIVSLDGWAGTQRYASIWSGD
QYGGEWEYIRFHIPTYIGAGLSGQPNVGSDMDGIFGGSKLVQTRDFQWKAFTPVQIDMDGWGANAKYPYVFGEPYTSINR
MYLKLKAEMMPYNYSIANEATNNGVPMIRAMMLEYPEEYTYGTDTQYQYMWGPNMLVAPIYQNTDGDSEGNDIRNNIYLP
DEEQIWIDYFTGKQYRGGGVLNNFEAPLWKLPIFVKNGAIIPMTSENNNPEERDDSHRIYEVYPSGDTSFEVYEDDGLTT
DYKEGKSAKTMVTSSAPKTGKGTAVINVGLLEGDYNGIVLDRSTEFIVTVSEKPSNLGVTLGGNDVQLTEAQSLEEFEKG
SNMYFYDETPNLNKYATEGSEFAKVEITSTPKLRVKVDKTNVKENEVKLTIDGFNNTQDIDKNEVNESLGVPGDFRAPEE
DITPESIKLTWDEVEGATTYDVEIDGTIFKNIKNTEYLDTGLNYDTEYSYRVRSVNKDGHSNWSELIKVKTDLDPYRNVP
KDMKTEWKWGQYSSDEPSKAVDGDDSSQFHSKDSAIDKPFIIDMQKAYTIEKLELLFRKNGNGSVKRAEIYSSLDGITYE
KVFSNAEGSDIAPWTTDGEVKTINFNKPIKARYFKIVTKESIGNFLAMREFRPYKVDGTNGQIVGDWNNSGSIEEGDLVF
LENYAGLTTADSDWGYVSMADLNNNGLIDAYDISYVSSKLEGGVKPSEGLELQGEMMLVPSKSEIKSGETFTIDLVGTGL
SDINAFSAEIPLDSTKYEYIKTEGTVSTSGMKNLSKARVHTDNTQHVYVNFTNIGDNVKVNGTDTIARITLKAKQNITWD
MEISNALLVDSKLNSKSAIAKIVDLESELPSGRPTSSKVSKENITVSGDSSQLQAGMGLDKLIDGTTSSDDSSRMDLKWI
FTSDQQDKGTLPFEMTFEFNEPKTLENFTIYNRMNSNGTINIAAMKKVKAVGYLNGEEFDLGEKANITSATTVYELGGQE
FDKIVITALDSHKDKNTLAINEIEFYEKSEVETTGISFTENTPESVYLNRITPIFAEVTPDNANNLNYRLASENPDILQV
LRVDREDKATYYLRGLNPGVAKLVATTAEGNHKVEKEIVVLDGIDKTLLTKAIEEAKSYESLSEIYTIESYEALLEAIKH
AEDVLENSSSEKEIGDAIINLRSKISKLEERETVEEDKIDSSKLEAIYATSEADRDYKENAVDGDENTIWHSAYQAADKL
PVSITIKLDKAYDLNQIDYLPRQNSRNGHVTEYKIETSLDNENWTEVRTGNLEVNEAGNALANRGYNPIRFNTINAQYVR
FTAIKTLGDTNNKYASAAELVFYGKEGKVSAESITLEKTELKLNVNESEQLKAVLNPIESNDTITWTSSDESIAKVDENG
VITGIGKGEALITATIPNGKSATSKVIVEDSVSEEIIVSPVRDFKASQVNKKDVTVTWTTPESTNGLEGYILYRDGKKVA
KLEADETSYMFNKLNRHTIYNFKIATKYSNGKISEKSSITIRTAR

Sequences:

>Translated_1965_residues
MKRKMIIKKLSVLTLGTIFTSNILLPSTLIYAFPTEGINHNIEKEEKKEIKESNYSQIGGVENFTQNENDVLLDLSTGEK
IRISFLKEDVLRIYMDPTGEFQEEPTPNSKDHITKIINKTEEEYENPTPIVEDGEIIKISTSAVQLRIEKSTGKMELFNK
LNNKTVWKEAEPLKHSADGTIQTLESNEDEYFYGGGMQNGRFSHKGKKINIKNENNWVDGGVASPNPFYFSTNGYGVMRH
TFKPGEYDFEASASGKVTTKHEENRFDAYYFIDEKPTNIIDKFTELTGEPVLLPEYGFYLGHANCYSRDWINDETGQESQ
TQKPGFDRQESLMVDAKKVVDDHVSNDTPLGWFLPNDGYGCGYGREESIDGNIANLKEFVDYARGFGIQTGLWTQSSLKP
TGNQEAYLERDIDKEVGVAGTNGVKTDVAWVGAGYSFALNSVRQAAEGIINNSKDKARPFIVSLDGWAGTQRYASIWSGD
QYGGEWEYIRFHIPTYIGAGLSGQPNVGSDMDGIFGGSKLVQTRDFQWKAFTPVQIDMDGWGANAKYPYVFGEPYTSINR
MYLKLKAEMMPYNYSIANEATNNGVPMIRAMMLEYPEEYTYGTDTQYQYMWGPNMLVAPIYQNTDGDSEGNDIRNNIYLP
DEEQIWIDYFTGKQYRGGGVLNNFEAPLWKLPIFVKNGAIIPMTSENNNPEERDDSHRIYEVYPSGDTSFEVYEDDGLTT
DYKEGKSAKTMVTSSAPKTGKGTAVINVGLLEGDYNGIVLDRSTEFIVTVSEKPSNLGVTLGGNDVQLTEAQSLEEFEKG
SNMYFYDETPNLNKYATEGSEFAKVEITSTPKLRVKVDKTNVKENEVKLTIDGFNNTQDIDKNEVNESLGVPGDFRAPEE
DITPESIKLTWDEVEGATTYDVEIDGTIFKNIKNTEYLDTGLNYDTEYSYRVRSVNKDGHSNWSELIKVKTDLDPYRNVP
KDMKTEWKWGQYSSDEPSKAVDGDDSSQFHSKDSAIDKPFIIDMQKAYTIEKLELLFRKNGNGSVKRAEIYSSLDGITYE
KVFSNAEGSDIAPWTTDGEVKTINFNKPIKARYFKIVTKESIGNFLAMREFRPYKVDGTNGQIVGDWNNSGSIEEGDLVF
LENYAGLTTADSDWGYVSMADLNNNGLIDAYDISYVSSKLEGGVKPSEGLELQGEMMLVPSKSEIKSGETFTIDLVGTGL
SDINAFSAEIPLDSTKYEYIKTEGTVSTSGMKNLSKARVHTDNTQHVYVNFTNIGDNVKVNGTDTIARITLKAKQNITWD
MEISNALLVDSKLNSKSAIAKIVDLESELPSGRPTSSKVSKENITVSGDSSQLQAGMGLDKLIDGTTSSDDSSRMDLKWI
FTSDQQDKGTLPFEMTFEFNEPKTLENFTIYNRMNSNGTINIAAMKKVKAVGYLNGEEFDLGEKANITSATTVYELGGQE
FDKIVITALDSHKDKNTLAINEIEFYEKSEVETTGISFTENTPESVYLNRITPIFAEVTPDNANNLNYRLASENPDILQV
LRVDREDKATYYLRGLNPGVAKLVATTAEGNHKVEKEIVVLDGIDKTLLTKAIEEAKSYESLSEIYTIESYEALLEAIKH
AEDVLENSSSEKEIGDAIINLRSKISKLEERETVEEDKIDSSKLEAIYATSEADRDYKENAVDGDENTIWHSAYQAADKL
PVSITIKLDKAYDLNQIDYLPRQNSRNGHVTEYKIETSLDNENWTEVRTGNLEVNEAGNALANRGYNPIRFNTINAQYVR
FTAIKTLGDTNNKYASAAELVFYGKEGKVSAESITLEKTELKLNVNESEQLKAVLNPIESNDTITWTSSDESIAKVDENG
VITGIGKGEALITATIPNGKSATSKVIVEDSVSEEIIVSPVRDFKASQVNKKDVTVTWTTPESTNGLEGYILYRDGKKVA
KLEADETSYMFNKLNRHTIYNFKIATKYSNGKISEKSSITIRTAR
>Mature_1965_residues
MKRKMIIKKLSVLTLGTIFTSNILLPSTLIYAFPTEGINHNIEKEEKKEIKESNYSQIGGVENFTQNENDVLLDLSTGEK
IRISFLKEDVLRIYMDPTGEFQEEPTPNSKDHITKIINKTEEEYENPTPIVEDGEIIKISTSAVQLRIEKSTGKMELFNK
LNNKTVWKEAEPLKHSADGTIQTLESNEDEYFYGGGMQNGRFSHKGKKINIKNENNWVDGGVASPNPFYFSTNGYGVMRH
TFKPGEYDFEASASGKVTTKHEENRFDAYYFIDEKPTNIIDKFTELTGEPVLLPEYGFYLGHANCYSRDWINDETGQESQ
TQKPGFDRQESLMVDAKKVVDDHVSNDTPLGWFLPNDGYGCGYGREESIDGNIANLKEFVDYARGFGIQTGLWTQSSLKP
TGNQEAYLERDIDKEVGVAGTNGVKTDVAWVGAGYSFALNSVRQAAEGIINNSKDKARPFIVSLDGWAGTQRYASIWSGD
QYGGEWEYIRFHIPTYIGAGLSGQPNVGSDMDGIFGGSKLVQTRDFQWKAFTPVQIDMDGWGANAKYPYVFGEPYTSINR
MYLKLKAEMMPYNYSIANEATNNGVPMIRAMMLEYPEEYTYGTDTQYQYMWGPNMLVAPIYQNTDGDSEGNDIRNNIYLP
DEEQIWIDYFTGKQYRGGGVLNNFEAPLWKLPIFVKNGAIIPMTSENNNPEERDDSHRIYEVYPSGDTSFEVYEDDGLTT
DYKEGKSAKTMVTSSAPKTGKGTAVINVGLLEGDYNGIVLDRSTEFIVTVSEKPSNLGVTLGGNDVQLTEAQSLEEFEKG
SNMYFYDETPNLNKYATEGSEFAKVEITSTPKLRVKVDKTNVKENEVKLTIDGFNNTQDIDKNEVNESLGVPGDFRAPEE
DITPESIKLTWDEVEGATTYDVEIDGTIFKNIKNTEYLDTGLNYDTEYSYRVRSVNKDGHSNWSELIKVKTDLDPYRNVP
KDMKTEWKWGQYSSDEPSKAVDGDDSSQFHSKDSAIDKPFIIDMQKAYTIEKLELLFRKNGNGSVKRAEIYSSLDGITYE
KVFSNAEGSDIAPWTTDGEVKTINFNKPIKARYFKIVTKESIGNFLAMREFRPYKVDGTNGQIVGDWNNSGSIEEGDLVF
LENYAGLTTADSDWGYVSMADLNNNGLIDAYDISYVSSKLEGGVKPSEGLELQGEMMLVPSKSEIKSGETFTIDLVGTGL
SDINAFSAEIPLDSTKYEYIKTEGTVSTSGMKNLSKARVHTDNTQHVYVNFTNIGDNVKVNGTDTIARITLKAKQNITWD
MEISNALLVDSKLNSKSAIAKIVDLESELPSGRPTSSKVSKENITVSGDSSQLQAGMGLDKLIDGTTSSDDSSRMDLKWI
FTSDQQDKGTLPFEMTFEFNEPKTLENFTIYNRMNSNGTINIAAMKKVKAVGYLNGEEFDLGEKANITSATTVYELGGQE
FDKIVITALDSHKDKNTLAINEIEFYEKSEVETTGISFTENTPESVYLNRITPIFAEVTPDNANNLNYRLASENPDILQV
LRVDREDKATYYLRGLNPGVAKLVATTAEGNHKVEKEIVVLDGIDKTLLTKAIEEAKSYESLSEIYTIESYEALLEAIKH
AEDVLENSSSEKEIGDAIINLRSKISKLEERETVEEDKIDSSKLEAIYATSEADRDYKENAVDGDENTIWHSAYQAADKL
PVSITIKLDKAYDLNQIDYLPRQNSRNGHVTEYKIETSLDNENWTEVRTGNLEVNEAGNALANRGYNPIRFNTINAQYVR
FTAIKTLGDTNNKYASAAELVFYGKEGKVSAESITLEKTELKLNVNESEQLKAVLNPIESNDTITWTSSDESIAKVDENG
VITGIGKGEALITATIPNGKSATSKVIVEDSVSEEIIVSPVRDFKASQVNKKDVTVTWTTPESTNGLEGYILYRDGKKVA
KLEADETSYMFNKLNRHTIYNFKIATKYSNGKISEKSSITIRTAR

Specific function: Biological function unknown. Capable of hydrolyzing the glycosidic link of O-GlcNAcylated proteins [H]

COG id: COG1501

COG function: function code G; Alpha-glucosidases, family 31 of glycosyl hydrolases

Gene ontology:

Cell location: Cytoplasm [C]

Metaboloic importance: Unknown [C]

Operon status: Not Known

Operon components: None

Similarity: Contains 1 fibronectin type-III domain [H]

Homologues:

Organism=Homo sapiens, GI66346737, Length=285, Percent_Identity=28.0701754385965, Blast_Score=124, Evalue=9e-28,
Organism=Homo sapiens, GI88900491, Length=310, Percent_Identity=26.1290322580645, Blast_Score=120, Evalue=2e-26,
Organism=Homo sapiens, GI38202257, Length=310, Percent_Identity=26.1290322580645, Blast_Score=120, Evalue=2e-26,
Organism=Homo sapiens, GI221316699, Length=257, Percent_Identity=29.1828793774319, Blast_Score=96, Evalue=3e-19,
Organism=Homo sapiens, GI119393895, Length=174, Percent_Identity=30.4597701149425, Blast_Score=90, Evalue=3e-17,
Organism=Homo sapiens, GI119393893, Length=174, Percent_Identity=30.4597701149425, Blast_Score=90, Evalue=3e-17,
Organism=Homo sapiens, GI119393891, Length=174, Percent_Identity=30.4597701149425, Blast_Score=90, Evalue=3e-17,
Organism=Homo sapiens, GI157364974, Length=254, Percent_Identity=27.1653543307087, Blast_Score=82, Evalue=6e-15,
Organism=Homo sapiens, GI310115361, Length=265, Percent_Identity=23.7735849056604, Blast_Score=80, Evalue=3e-14,
Organism=Escherichia coli, GI2367256, Length=284, Percent_Identity=23.5915492957746, Blast_Score=74, Evalue=1e-13,
Organism=Caenorhabditis elegans, GI17560800, Length=316, Percent_Identity=28.4810126582279, Blast_Score=124, Evalue=5e-28,
Organism=Caenorhabditis elegans, GI17560798, Length=316, Percent_Identity=28.4810126582279, Blast_Score=124, Evalue=6e-28,
Organism=Caenorhabditis elegans, GI71991189, Length=287, Percent_Identity=28.2229965156794, Blast_Score=110, Evalue=6e-24,
Organism=Caenorhabditis elegans, GI32563849, Length=282, Percent_Identity=30.1418439716312, Blast_Score=76, Evalue=2e-13,
Organism=Saccharomyces cerevisiae, GI6319706, Length=304, Percent_Identity=26.6447368421053, Blast_Score=101, Evalue=1e-21,
Organism=Drosophila melanogaster, GI24643749, Length=288, Percent_Identity=25, Blast_Score=80, Evalue=2e-14,
Organism=Drosophila melanogaster, GI24643753, Length=288, Percent_Identity=25, Blast_Score=80, Evalue=2e-14,
Organism=Drosophila melanogaster, GI24643751, Length=288, Percent_Identity=25, Blast_Score=80, Evalue=2e-14,
Organism=Drosophila melanogaster, GI24643746, Length=288, Percent_Identity=25, Blast_Score=80, Evalue=2e-14,
Organism=Drosophila melanogaster, GI21357605, Length=288, Percent_Identity=25, Blast_Score=80, Evalue=2e-14,

Paralogues:

None

Copy number: NA

Swissprot (AC and ID): NA

Other databases:

- InterPro:   IPR015882
- InterPro:   IPR011496
- InterPro:   IPR008965
- InterPro:   IPR000421
- InterPro:   IPR018452
- InterPro:   IPR008957
- InterPro:   IPR003961
- InterPro:   IPR008979
- InterPro:   IPR017853
- InterPro:   IPR013783 [H]

Pfam domain/function: PF00754 F5_F8_type_C; PF00041 fn3; PF02838 Glyco_hydro_20b; PF07555 NAGidase [H]

EC number: =3.2.1.52 [H]

Molecular weight: Translated: 219707; Mature: 219707

Theoretical pI: Translated: 4.46; Mature: 4.46

Prosite motif: PS00018 EF_HAND_1 ; PS50022 FA58C_3 ; PS50853 FN3 ; PS00448 CLOS_CELLULOSOME_RPT

Important sites: NA

Signals:

None

Transmembrane regions:

None

Cys/Met content:

0.1 %Cys     (Translated Protein)
1.7 %Met     (Translated Protein)
1.8 %Cys+Met (Translated Protein)
0.1 %Cys     (Mature Protein)
1.7 %Met     (Mature Protein)
1.8 %Cys+Met (Mature Protein)

Secondary structure:

>Translated Secondary Structure
MKRKMIIKKLSVLTLGTIFTSNILLPSTLIYAFPTEGINHNIEKEEKKEIKESNYSQIGG
CCCHHHHHHHHHHHHHHHHHCCCCCCCEEEEEECCCCCCCCCCHHHHHHHHHCCCHHCCC
VENFTQNENDVLLDLSTGEKIRISFLKEDVLRIYMDPTGEFQEEPTPNSKDHITKIINKT
CCCCCCCCCCEEEEECCCCEEEEEEHHCCEEEEEECCCCCCCCCCCCCCHHHHHHHHHHH
EEEYENPTPIVEDGEIIKISTSAVQLRIEKSTGKMELFNKLNNKTVWKEAEPLKHSADGT
HHHHCCCCCEECCCCEEEEEEEEEEEEEECCCCHHHHHHHHCCCEECCCCCCCCCCCCCE
IQTLESNEDEYFYGGGMQNGRFSHKGKKINIKNENNWVDGGVASPNPFYFSTNGYGVMRH
EEEECCCCCCEEECCCCCCCEECCCCCEEEECCCCCEECCCCCCCCCEEEECCCCEEEEE
TFKPGEYDFEASASGKVTTKHEENRFDAYYFIDEKPTNIIDKFTELTGEPVLLPEYGFYL
ECCCCCCCEECCCCCCEEECCCCCCEEEEEEECCCCHHHHHHHHHHCCCEEEEECCCEEE
GHANCYSRDWINDETGQESQTQKPGFDRQESLMVDAKKVVDDHVSNDTPLGWFLPNDGYG
ECCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHHHCCCCCCEEEEECCCCCC
CGYGREESIDGNIANLKEFVDYARGFGIQTGLWTQSSLKPTGNQEAYLERDIDKEVGVAG
CCCCCCCCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCCCCCCHHHHHCCCHHCCCCC
TNGVKTDVAWVGAGYSFALNSVRQAAEGIINNSKDKARPFIVSLDGWAGTQRYASIWSGD
CCCCEEEEEEEECCHHHHHHHHHHHHHHHHCCCCCCCCCEEEEECCCCCCHHHHHHCCCC
QYGGEWEYIRFHIPTYIGAGLSGQPNVGSDMDGIFGGSKLVQTRDFQWKAFTPVQIDMDG
CCCCCEEEEEEEECHHHCCCCCCCCCCCCCCCCCCCCCEEEEECCCCEEEECEEEEEECC
WGANAKYPYVFGEPYTSINRMYLKLKAEMMPYNYSIANEATNNGVPMIRAMMLEYPEEYT
CCCCCCCCEEECCCCCCCEEEEEEEEEEECCCCEEECCCCCCCCCHHHHHHHHHCCHHCC
YGTDTQYQYMWGPNMLVAPIYQNTDGDSEGNDIRNNIYLPDEEQIWIDYFTGKQYRGGGV
CCCCCEEEEEECCCEEEEEEEECCCCCCCCCCCCCCEECCCCCEEEEEEECCCEECCCCC
LNNFEAPLWKLPIFVKNGAIIPMTSENNNPEERDDSHRIYEVYPSGDTSFEVYEDDGLTT
CCCCCCCEEECCEEEECCEEEEEECCCCCCCCCCCCCEEEEEECCCCCEEEEEECCCCCC
DYKEGKSAKTMVTSSAPKTGKGTAVINVGLLEGDYNGIVLDRSTEFIVTVSEKPSNLGVT
CCCCCCCCEEEEECCCCCCCCCEEEEEEEEEECCCCEEEEECCCEEEEEEECCCCCEEEE
LGGNDVQLTEAQSLEEFEKGSNMYFYDETPNLNKYATEGSEFAKVEITSTPKLRVKVDKT
ECCCEEEEECHHHHHHHHCCCCEEEECCCCCCCHHHCCCCCEEEEEEECCCEEEEEEECC
NVKENEVKLTIDGFNNTQDIDKNEVNESLGVPGDFRAPEEDITPESIKLTWDEVEGATTY
CCCCCEEEEEECCCCCCCCCCHHHHHHHCCCCCCCCCCCCCCCCCEEEEEEECCCCCEEE
DVEIDGTIFKNIKNTEYLDTGLNYDTEYSYRVRSVNKDGHSNWSELIKVKTDLDPYRNVP
EEEECCHHCCCCCCCEEEECCCCCCCCCEEEEEEECCCCCCCHHHHEEEECCCCHHHCCC
KDMKTEWKWGQYSSDEPSKAVDGDDSSQFHSKDSAIDKPFIIDMQKAYTIEKLELLFRKN
CHHCCCCCCCCCCCCCCCCCCCCCCCCHHCCCCCCCCCCEEEECHHHHHHHEEHEEEEEC
GNGSVKRAEIYSSLDGITYEKVFSNAEGSDIAPWTTDGEVKTINFNKPIKARYFKIVTKE
CCCCEEHHHHHHHHCCCCHHHHHCCCCCCCCCCCCCCCCEEEEECCCCCCEEEEEEEEHH
SIGNFLAMREFRPYKVDGTNGQIVGDWNNSGSIEEGDLVFLENYAGLTTADSDWGYVSMA
HHCCCHHHHCCCCEEEECCCCEEEECCCCCCCCCCCCEEEEECCCCCEECCCCCCEEEEE
DLNNNGLIDAYDISYVSSKLEGGVKPSEGLELQGEMMLVPSKSEIKSGETFTIDLVGTGL
ECCCCCCEEEEEHHHHHHHHCCCCCCCCCCEECCCEEEECCHHHHCCCCEEEEEEEECCC
SDINAFSAEIPLDSTKYEYIKTEGTVSTSGMKNLSKARVHTDNTQHVYVNFTNIGDNVKV
CCCCCEEEECCCCCCCEEEEEECCCEECCCHHHHHHHEEECCCCCEEEEEEEECCCEEEE
NGTDTIARITLKAKQNITWDMEISNALLVDSKLNSKSAIAKIVDLESELPSGRPTSSKVS
CCCCEEEEEEEEECCCCEEEEEECCEEEEECCCCCHHHHHHHHHHHHHCCCCCCCCCCCC
KENITVSGDSSQLQAGMGLDKLIDGTTSSDDSSRMDLKWIFTSDQQDKGTLPFEMTFEFN
CCEEEEECCHHHHHHCCCHHHHHCCCCCCCCCCCEEEEEEEECCCCCCCCCCEEEEEECC
EPKTLENFTIYNRMNSNGTINIAAMKKVKAVGYLNGEEFDLGEKANITSATTVYELGGQE
CCCCCCEEEEEEEECCCCEEEEEEEEEEEEEEECCCCCCCCCCCCCCCCCEEEEECCCCC
FDKIVITALDSHKDKNTLAINEIEFYEKSEVETTGISFTENTPESVYLNRITPIFAEVTP
CCEEEEEEECCCCCCCEEEEEEEEECCCCCCEECCEEEECCCCCEEEEECCCEEEEEECC
DNANNLNYRLASENPDILQVLRVDREDKATYYLRGLNPGVAKLVATTAEGNHKVEKEIVV
CCCCCCEEEEECCCCCEEEHEECCCCCCEEEEEECCCCCCEEEEEEECCCCCEEEEEEEE
LDGIDKTLLTKAIEEAKSYESLSEIYTIESYEALLEAIKHAEDVLENSSSEKEIGDAIIN
EECCCHHHHHHHHHHHHHHHHHHHHEEHHHHHHHHHHHHHHHHHHHCCCCHHHHHHHHHH
LRSKISKLEERETVEEDKIDSSKLEAIYATSEADRDYKENAVDGDENTIWHSAYQAADKL
HHHHHHHHHHHHHHHHHCCCCHHEEEEEECCCCCCCHHHCCCCCCCCCCHHHHHHHHCCC
PVSITIKLDKAYDLNQIDYLPRQNSRNGHVTEYKIETSLDNENWTEVRTGNLEVNEAGNA
CEEEEEEECCCCCCCHHCCCCCCCCCCCCEEEEEEEECCCCCCCCEEEECCEEECCCCCH
LANRGYNPIRFNTINAQYVRFTAIKTLGDTNNKYASAAELVFYGKEGKVSAESITLEKTE
HHHCCCCCEEEEECCCEEEEEEEEEECCCCCCCCCCEEEEEEECCCCCEEHHEEEEEEEE
LKLNVNESEQLKAVLNPIESNDTITWTSSDESIAKVDENGVITGIGKGEALITATIPNGK
EEEECCCHHHHHHHHCCCCCCCEEEEECCCCCEEEECCCCEEEEECCCCEEEEEECCCCC
SATSKVIVEDSVSEEIIVSPVRDFKASQVNKKDVTVTWTTPESTNGLEGYILYRDGKKVA
CCCCEEEEECCCCCCEEECCHHHHHHHCCCCCEEEEEEECCCCCCCCEEEEEEECCCEEE
KLEADETSYMFNKLNRHTIYNFKIATKYSNGKISEKSSITIRTAR
EEECCCHHHHHHHCCCCEEEEEEEEEEECCCCCCCCCEEEEEECC
>Mature Secondary Structure
MKRKMIIKKLSVLTLGTIFTSNILLPSTLIYAFPTEGINHNIEKEEKKEIKESNYSQIGG
CCCHHHHHHHHHHHHHHHHHCCCCCCCEEEEEECCCCCCCCCCHHHHHHHHHCCCHHCCC
VENFTQNENDVLLDLSTGEKIRISFLKEDVLRIYMDPTGEFQEEPTPNSKDHITKIINKT
CCCCCCCCCCEEEEECCCCEEEEEEHHCCEEEEEECCCCCCCCCCCCCCHHHHHHHHHHH
EEEYENPTPIVEDGEIIKISTSAVQLRIEKSTGKMELFNKLNNKTVWKEAEPLKHSADGT
HHHHCCCCCEECCCCEEEEEEEEEEEEEECCCCHHHHHHHHCCCEECCCCCCCCCCCCCE
IQTLESNEDEYFYGGGMQNGRFSHKGKKINIKNENNWVDGGVASPNPFYFSTNGYGVMRH
EEEECCCCCCEEECCCCCCCEECCCCCEEEECCCCCEECCCCCCCCCEEEECCCCEEEEE
TFKPGEYDFEASASGKVTTKHEENRFDAYYFIDEKPTNIIDKFTELTGEPVLLPEYGFYL
ECCCCCCCEECCCCCCEEECCCCCCEEEEEEECCCCHHHHHHHHHHCCCEEEEECCCEEE
GHANCYSRDWINDETGQESQTQKPGFDRQESLMVDAKKVVDDHVSNDTPLGWFLPNDGYG
ECCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHHHCCCCCCEEEEECCCCCC
CGYGREESIDGNIANLKEFVDYARGFGIQTGLWTQSSLKPTGNQEAYLERDIDKEVGVAG
CCCCCCCCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCCCCCCHHHHHCCCHHCCCCC
TNGVKTDVAWVGAGYSFALNSVRQAAEGIINNSKDKARPFIVSLDGWAGTQRYASIWSGD
CCCCEEEEEEEECCHHHHHHHHHHHHHHHHCCCCCCCCCEEEEECCCCCCHHHHHHCCCC
QYGGEWEYIRFHIPTYIGAGLSGQPNVGSDMDGIFGGSKLVQTRDFQWKAFTPVQIDMDG
CCCCCEEEEEEEECHHHCCCCCCCCCCCCCCCCCCCCCEEEEECCCCEEEECEEEEEECC
WGANAKYPYVFGEPYTSINRMYLKLKAEMMPYNYSIANEATNNGVPMIRAMMLEYPEEYT
CCCCCCCCEEECCCCCCCEEEEEEEEEEECCCCEEECCCCCCCCCHHHHHHHHHCCHHCC
YGTDTQYQYMWGPNMLVAPIYQNTDGDSEGNDIRNNIYLPDEEQIWIDYFTGKQYRGGGV
CCCCCEEEEEECCCEEEEEEEECCCCCCCCCCCCCCEECCCCCEEEEEEECCCEECCCCC
LNNFEAPLWKLPIFVKNGAIIPMTSENNNPEERDDSHRIYEVYPSGDTSFEVYEDDGLTT
CCCCCCCEEECCEEEECCEEEEEECCCCCCCCCCCCCEEEEEECCCCCEEEEEECCCCCC
DYKEGKSAKTMVTSSAPKTGKGTAVINVGLLEGDYNGIVLDRSTEFIVTVSEKPSNLGVT
CCCCCCCCEEEEECCCCCCCCCEEEEEEEEEECCCCEEEEECCCEEEEEEECCCCCEEEE
LGGNDVQLTEAQSLEEFEKGSNMYFYDETPNLNKYATEGSEFAKVEITSTPKLRVKVDKT
ECCCEEEEECHHHHHHHHCCCCEEEECCCCCCCHHHCCCCCEEEEEEECCCEEEEEEECC
NVKENEVKLTIDGFNNTQDIDKNEVNESLGVPGDFRAPEEDITPESIKLTWDEVEGATTY
CCCCCEEEEEECCCCCCCCCCHHHHHHHCCCCCCCCCCCCCCCCCEEEEEEECCCCCEEE
DVEIDGTIFKNIKNTEYLDTGLNYDTEYSYRVRSVNKDGHSNWSELIKVKTDLDPYRNVP
EEEECCHHCCCCCCCEEEECCCCCCCCCEEEEEEECCCCCCCHHHHEEEECCCCHHHCCC
KDMKTEWKWGQYSSDEPSKAVDGDDSSQFHSKDSAIDKPFIIDMQKAYTIEKLELLFRKN
CHHCCCCCCCCCCCCCCCCCCCCCCCCHHCCCCCCCCCCEEEECHHHHHHHEEHEEEEEC
GNGSVKRAEIYSSLDGITYEKVFSNAEGSDIAPWTTDGEVKTINFNKPIKARYFKIVTKE
CCCCEEHHHHHHHHCCCCHHHHHCCCCCCCCCCCCCCCCEEEEECCCCCCEEEEEEEEHH
SIGNFLAMREFRPYKVDGTNGQIVGDWNNSGSIEEGDLVFLENYAGLTTADSDWGYVSMA
HHCCCHHHHCCCCEEEECCCCEEEECCCCCCCCCCCCEEEEECCCCCEECCCCCCEEEEE
DLNNNGLIDAYDISYVSSKLEGGVKPSEGLELQGEMMLVPSKSEIKSGETFTIDLVGTGL
ECCCCCCEEEEEHHHHHHHHCCCCCCCCCCEECCCEEEECCHHHHCCCCEEEEEEEECCC
SDINAFSAEIPLDSTKYEYIKTEGTVSTSGMKNLSKARVHTDNTQHVYVNFTNIGDNVKV
CCCCCEEEECCCCCCCEEEEEECCCEECCCHHHHHHHEEECCCCCEEEEEEEECCCEEEE
NGTDTIARITLKAKQNITWDMEISNALLVDSKLNSKSAIAKIVDLESELPSGRPTSSKVS
CCCCEEEEEEEEECCCCEEEEEECCEEEEECCCCCHHHHHHHHHHHHHCCCCCCCCCCCC
KENITVSGDSSQLQAGMGLDKLIDGTTSSDDSSRMDLKWIFTSDQQDKGTLPFEMTFEFN
CCEEEEECCHHHHHHCCCHHHHHCCCCCCCCCCCEEEEEEEECCCCCCCCCCEEEEEECC
EPKTLENFTIYNRMNSNGTINIAAMKKVKAVGYLNGEEFDLGEKANITSATTVYELGGQE
CCCCCCEEEEEEEECCCCEEEEEEEEEEEEEEECCCCCCCCCCCCCCCCCEEEEECCCCC
FDKIVITALDSHKDKNTLAINEIEFYEKSEVETTGISFTENTPESVYLNRITPIFAEVTP
CCEEEEEEECCCCCCCEEEEEEEEECCCCCCEECCEEEECCCCCEEEEECCCEEEEEECC
DNANNLNYRLASENPDILQVLRVDREDKATYYLRGLNPGVAKLVATTAEGNHKVEKEIVV
CCCCCCEEEEECCCCCEEEHEECCCCCCEEEEEECCCCCCEEEEEEECCCCCEEEEEEEE
LDGIDKTLLTKAIEEAKSYESLSEIYTIESYEALLEAIKHAEDVLENSSSEKEIGDAIIN
EECCCHHHHHHHHHHHHHHHHHHHHEEHHHHHHHHHHHHHHHHHHHCCCCHHHHHHHHHH
LRSKISKLEERETVEEDKIDSSKLEAIYATSEADRDYKENAVDGDENTIWHSAYQAADKL
HHHHHHHHHHHHHHHHHCCCCHHEEEEEECCCCCCCHHHCCCCCCCCCCHHHHHHHHCCC
PVSITIKLDKAYDLNQIDYLPRQNSRNGHVTEYKIETSLDNENWTEVRTGNLEVNEAGNA
CEEEEEEECCCCCCCHHCCCCCCCCCCCCEEEEEEEECCCCCCCCEEEECCEEECCCCCH
LANRGYNPIRFNTINAQYVRFTAIKTLGDTNNKYASAAELVFYGKEGKVSAESITLEKTE
HHHCCCCCEEEEECCCEEEEEEEEEECCCCCCCCCCEEEEEEECCCCCEEHHEEEEEEEE
LKLNVNESEQLKAVLNPIESNDTITWTSSDESIAKVDENGVITGIGKGEALITATIPNGK
EEEECCCHHHHHHHHCCCCCCCEEEEECCCCCEEEECCCCEEEEECCCCEEEEEECCCCC
SATSKVIVEDSVSEEIIVSPVRDFKASQVNKKDVTVTWTTPESTNGLEGYILYRDGKKVA
CCCCEEEEECCCCCCEEECCHHHHHHHCCCCCEEEEEEECCCCCCCCEEEEEEECCCEEE
KLEADETSYMFNKLNRHTIYNFKIATKYSNGKISEKSSITIRTAR
EEECCCHHHHHHHCCCCEEEEEEEEEEECCCCCCCCCEEEEEECC

PDB accession: NA

Resolution: NA

Structure class: Alpha Beta

Cofactors: NA

Metal ions: NA

Kcat value (1/min): NA

Specific activity: NA

Km value (mM): NA

Substrates: NA

Specific reaction: NA

General reaction: NA

Inhibitor: NA

Structure determination priority: 9.0

TargetDB status: NA

Availability: NA

References: NA