Definition Escherichia coli ED1a chromosome, complete genome.
Accession NC_011745
Length 5,209,548

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The map label for this gene is yeeJ [H]

Identifier: 218690009

GI number: 218690009

Start: 2222625

End: 2229728

Strand: Direct

Name: yeeJ [H]

Synonym: ECED1_2284

Alternate gene names: 218690009

Gene position: 2222625-2229728 (Clockwise)

Preceding gene: 218690002

Following gene: 218690010

Centisome position: 42.66

GC content: 49.99

Gene sequence:

>7104_bases
ATGTTAGCTCGTTCAGGGAAGGTAAGCATGGCTACGAAGAAGAGAAGTGGAGAAGAAATAAATGACCGACAAATATTATG
CGGGATGGGAATTAAACTACGCCGCTTAACTGCGGGTATCTGTCTGATAACTCAACTTGCGTTCCCTATGGCTGCGGCAG
CACAAGGTGTGGTAAACGCCGCAACCCAACAACCAGTTCCTGCACAAATTGCCATTGCAAATGCCAATACGGTGCCCTAC
ACCCTTGGAGCGTTGGAATCGGCCCAAAGCGTTGCCGAACGTTTCGGTATTTCGGTGGCTGAGTTACGCAAACTCAACCA
GTTTCGTACGTTTGCTCGAGGTTTTGATAATGTCCGCCAGGGTGATGAACTGGATGTCCCGGCACAAGTTAGTGAAAAAA
AATTAACCCCGCCGCCGGGTAATAGCAGTGACAACCTCGAGCAACAGATAGCCAGTACTTCACAGCAAATCGGGTCTCTG
CTCGCCGAAGATATGAACAGCGAGCAAGCGGCAAATATGGCGCGTGGATGGGCCTCTTCTCAGGCTTCAGGCGCAATGAC
AGACTGGTTAAGCCGCTTCGGTACCGCAAGAATCACGCTGGGCGTGGATGAAGATTTTAGCCTGAAGAACTCCCAGTTCG
ATTTTCTCCATCCGTGGTATGAAACGCCTGATAATCTCTTTTTCAGTCAGCATACTCTCCATCGTACTGACGAGCGTACG
CAGATTAACAACGGCTTAGGTTGGCGTCATTTCACTCCCACATGGATGTCGGGCATCAACTTCTTTTTCGACCACGATCT
TAGCCGTTACCACTCCCGCGCCGGCATTGGCGCGGAGTACTGGCGCGACTATCTAAAATTAAGCAGTAACGGCTATTTGC
GACTGACCAACTGGCGCAGCGCACCTGAACTGGACAACGATTATGAAGCACGCCCGGCCAATGGCTGGGATGTACGCGCA
GAAAGCTGGCTACCCGCCTGGCCGCACCTTGGCGGTAAACTGGTCTATGAACAGTATTATGGCGATGAAGTGGCCCTGTT
CGATAAAGACGATCGGCAAAGTAATCCTCATGCCATAACCGCTGGACTTAACTATACCCCCTTCCCGCTGATGACCTTCA
GCGCGGAGCAACGCCAGGGTAAACAGGGCGAAAATGACACCCGTTTTGCCGTCGATTTTACCTGGCAACCTGGCAGCGCA
ATGCAGAAACAGCTTGACCCGAATGAAGTCGCTGCACGGCGTAGCCTTGCAGGCAGCCGTTATGATCTGGTGGATCGCAA
CAACAATATCGTTCTGGAATATCGCAAAAAAGAACTGGTTCGCCTGACCCTGACAGACCCCGTGACAGGGAAGTCAGGAG
AAGTGAAATCACTGGTTTCGTCGCTACAAACCAAATATGCCCTGAAAGGCTATAACGTCGAAGCCACCGCACTGGAAGCT
GCCGGTGGCAAAGTGGTCACAACGGGTAAAGATATTCTGGTTACCCTGCCGGCTTACCGGTTCACCAGTACGCCAGAAAC
CGATAACACCTGGCCGATTGAAGTCACCGCCGAAGATGCCAAAGGCAATTTGTCGAATCGTGAACAGAGCATGGTGGTCG
TTCAGGCACCTACGCTAAGCCAGAAAGATTCCTCGGTATCGTTAAGTACCCAAACATTGAACGCGGATTCCCATTCAACC
GCCACACTGACTTTTATTGCGCATGATGCAGCAGGTAATCCTGTTGTCGGGCTGGTGCTCTCGACGCGTCACGAAGGTGT
TCAGGACATCACCCTTTCTGACTGGAAAGATAATGGTGACGGAAGCTATACCCAGATCCTGACCACAGGAGCGATGTCTG
GCACGCTGACGCTGATGCCACAGCTGAATGGTGTGGATGCGGCTAAAGCCCCCGCCGTGGTGAATATCATTTCTGTTTCG
TCATCCCGAACTCACTCGTCAATTAAGATTGATAAGGACCGTTATCTCTCCGGCAATCCTATCGAGGTGACGGTAGAACT
GAGAGATGAAAATGACAAACCTGTTAAGGAACAAAAACAGCAACTGAATAACGCAGTCAGCATCGACAACGTGAAACCAG
GAGTCACTACAGACTGGAAAGAAACCGCAGATGGCGTCTATAAGGCGACCTATACCGCCTATACCAAAGGCAGTGGACTT
ACTGCGAAGCTATTAATGCAAAACTGGAATGAAGATTTGCATACCGCTGGATTTATCATCGACGCCAACCCGCAGTCAGC
GAAAATTGCGACATTATCTGCCAGCAATAATGGTGTGCTCGCCAATGAGAATGCAGCAAACACCGTCTCGGTCAATGTCG
CTGATGAAGGAAGCAACCCAATCAATGATCATACCGTCACGTTTGCGGTATTAAGCGGATCGGCAACTTCCTTCAACAAT
CAAAACACCGCAAAAACGGATGTTAATGGTCTGGCGACTTTTGATCTGAAAAGTAGTAAGCAGGAAGACAACACGGTTGA
AGTCACCCTTGAAAATGGCGTGAAACAAACGTTAATCGTCAGTTTTGTCGGCGACTCGAGTACCGCGCAGGTTGATCTGC
AGAAGTCGAAAAATGAAGTGGTTGCTGACGGCAATGACAGCGTCACAATGACCGCGACCGTCCGGGATGCAAAAGGCAAC
CTGCTCAATGACGTCATGGTCACTTTCAATGTTAATTCAGCAGAGGCGAAACTGAGCCAAACCGAAGTGAATAGCCACGA
CGGGATCGCCACAGCTACGCTGACCAGTTTGAAAAATGGTGATTATAGGGTTACGGCCTCTGTGAGCTCTGGTTCCCAGG
CTAATCAACAGGTGAATTTTATCGGTGATCAAAGTACTGCTGCCCTGACCCTCAGTGTGCCTTCAGGTGATATCACCGTC
ACCAACACAGCTCCGCAATATATGACTGCAACCTTGCAGGATAAAAATGGCAACCCACTAAAAGATAAAGAAATCACCTT
CTCTGTGCCAAACGACGTCGCAAGTAAGTTCTCGATTAGCAACGGAGGAAAAGGCATGACGGATAGTAACGGGGTTGCAA
TCGCCTCCCTGACCGGCACGTTAGCGGGCACGCATATGATCATGGCTCGTCTGGCTAACAGCAATGTCAGCGATGCACAG
CCAATGACGTTTGTGGCGGATAAAGACAGAGCGGTTGTCGTTTTGCAAACATCGAAAGCGGAAATCATTGGGAATGGCGT
GGATGAGACAACTCTGACAGCAACAGTGAAAGATCCGTCGAATCATCCGGTGGCGGGGATAACGGTAAACTTCACCATGC
CACAGGACGTTGCGGCAAACTTTACCCTTGAAAATAACGGTATTGCCATCACTCAGGCCAATGGGGAAGCGCATGTCACG
CTGAAAGGTAAAAAAGCGGGCACGCATACGGTTACCGCAACGCTGGGTAATAACAATACCAGTGATTCGCAGCCGGTAAC
ATTTGTGGCGGACAAAGCCTCGGCTCAGGTTGTCCTGCAGATATCAAAAGATGAGATCACAGGTAATGGCGTCGATAGCG
CAACGCTAACTGCAACGGTTAAAGATCAGTTCGACAATGAGGTGAATAATCTTCCGGTAACATTCAGCTCAGCCTCTTCA
GGACTCACCCTGACCCCGGGAGTAAGTAATACCAACGAGTCTGGCATCGCGCAGGCCACTCTCGCAGGCGTTGCCTTTGG
TGAGAAGACGGTTACTGCATCACTGGCTAATAATGGTGCCAGCGACAACAAAACTGTGCATTTTATTGGCGACACAGCGG
CGGCAAAAATTATCGAGTTGACGCCTGTCCCAGACAGCATAATCGCCGGTACCCCGCAGAACAGCTCCGGCAGCGTCATC
ACCGCCACAGTCGTTGATAATAATGGCTTTCCGGTGAAAGGTGTGACTGTGAACTTCACCAGCAACGCAGCGACAGCCGA
AATGACGAACGGCGGTCAAGCCGTGACGAACGAACAGGGTAAGGCTACCGTCACTTATACCAATACCCGCTCCTCGATAG
AATCAGGAGCGAGACCGGATACCGTTGAGGCCAGTCTGGAAAATGGTAGCTCCACGCTTAGCACATCAATTAATGTCAAC
GCTGATGCGTCTACGGCACATCTCACCTTGCTACAGGCACTTTTTGATACAGTCTCCGCAGGCGAGACAACCAGTCTGTA
TATTGAGGTGAAGGATAATTACGGCAACGGTGTCCCCCAGCAGGAGGTAACCCTCAGCGTTTCACCAAGTGAAGGCGTGA
CCCCCAGTAATAACGCTATATATACTACCAACCACGACGGCAATTTTTACGCAAGCTTTACCGCTACAAAAGCCGGGGTT
TATCAATTGACGGCAACCCTCGAAAATGGCGATTCGATGCAACAAACAGTGACCTATGTGCCGAACGTCGCGAATGCTGA
AATCACGCTGGCAGCCTCGAAGGATCCGGTGATTGCCGACAATAACGATCTCACGACACTAACAGCAACAGTCGCTGATA
CAGAGGGCAATGCGATAGCCAACACTGAGGTAACATTTACTCTGCCGGAAGATGTGAAGGCGAACTTCACGCTGAGCGAT
GGCGGTAAAGTGATTACTGATGCTGAAGGCAAAGCGAAAGTCACGCTGAAAGGTACAAAAGCAGGCGCTCATACTGTTAC
AGCATCGATGACTGGCGGTAAGAGTGAGCAGTTGGTGGTGAACTTTATTGCGGATACGCTCACTGCACAGGTTAATCTTA
ACGTTACCGAGGACAATTTTATCGCTAATAACGTCGGGATGACCAGGCTGCAGGCAACAGTGACTGATGGAAACGGCAAC
CCGTTAGCCAATGAGGCGGTGACATTCACGCTACCGGCAGATGTGAGCGCAAGCTTTACTCTCGGACAAGGCGGTTCCGC
CATTACTGATATCAACGGCAAGGCTGAAGTTACACTGAGCGGTACAAAATCCGGCACCTACCCCGTGACAGTTAGCGTGA
ACAATTATGGTGTCAGTGATACGAAACAGGTGACTTTGATTGCCGATGCTGGTACCGCAAAACTAGCCTCCTTAACCTCT
GTATACTCATTCGTCGTCAGCACGACCGAGGGCGCAACCATGACGGCAAGCGTCACTGACGCTAACGGCAACCCGGTAGA
AGGCATAAAAGTTAATTTCCGCGGAACCTCCGTCACGCTAAGCAGCACCAGCGTTGAAACGGATGATCGGGGTTTCGCTG
AAATTCTTGTGACAAGCACCGAGGTCGGACTGAAAACAGTTTCAGCCTCTCTGGCAGATAAACCTACTGAAGTCATCTCG
CGATTACTGAATGCCAGTGCAGATGTTAATTCTGCGACGATTACCAGTCTGGAGATACCGGAAGGTCAGGTAATGGTCGC
ACAAGACGTAGCAGTTAAAGCTCACGTTAACGACCAGTTTGGCAACCCGGTTGCGCATCAACCCGTGACATTCAGTGCAG
AGCCATCCTCGCAAATGATCATCAGCCAGAATACGGTCTCTACTAATACGCAGGGTGTAGCCGAGGTCACCATGACGCCC
GAAAGAAACGGTTCGTATATGGTGAAAGCATCCCTGCCGAATGGAGCCTCACTTGAGAAACAACTGGAGGCTATTGATGA
AAAACTGACACTCACGGCGTCCAGTCCGCTTATCGGTGTCTATGCCCCTACAGGCGCTACTCTGACGGCAACGCTAACCT
CTGCAAATGGCACTCCAGTGGAGGGTCAGGTCATCAACTTTAGCGTAACGCCAGAAGGGGCGACGTTAAGTGGCGGAAAA
GTGAGAACTAACTCTTCAGGTCAGGCTCCAGTCGTTTTGACCAGCAATAAAGTCGGTACATATACGGTGACTGCATCTTT
CCATAACGGCGTAACAATACAGACACAGACAACCGTGAAAGTCACTGGCAACTCAAGCACCGCCCATGTTGCTAGCTTTA
TCGCTGATCCATCGACTATCGCCGCCACCAACACTGATTTAAGTACCTTAAAGGCAACGGTTGAGGATGGCAGTGGTAAC
CTGATCGAAGGTCTCACTGTGTACTTCGCCTTAAAAAGCGGCTCTGCCACATTAACGTCATTAACAGCGGTGACCGATCA
AAACGGAATCGCGACAACAAGCGTGAAAGGAGCGATGACAGGTAGCGTCACGGTAAGCGCAGTCACGACCGCTGGTGGAA
TGCAAACAGTAGATATAACGCTGGTGGCTGGCCCGGCAGACACCTCGCAGTCCGTCCTTAAGAGCAATCGGTCATCACTG
AAAGGGGACTATACCGATAGTGCTGAATTACGTCTTGTTCTGCACGATATATCAGGCAATCCGATCAAAGTTTCTGAAGG
GATGGAATTTGTGCAATCAGGTACTAACGTGCCCTATATAAAAATTAGCGCAATTGATTACAGTCTAAATATCAACGGTG
ATTACAAAGCCACTGTTACAGGAGGCGGAGAGGGTATCGCAACGCTGATCCCTGTATTGAATGGTGTTCATCAAGCTGGT
CTGAGTACCACAATACAATTCACTCGCGCAGAAGACAAAATAATGAGCGGTACAGTATCAGTCAATGGTACTGACCTACC
GACAACTACATTCCCTTCGCAGGGGTTCACCGGGGCGTATTATCAGTTGAATAATGACAACTTTGCCCCAGGAAAAACGG
CGGCTGATTATGAGTTTTCAAGCTCTGCCTCCTGGGTCGATGTTGATGCTACCGGTAAAGTGACATTTAAAAATGTCGGC
AGCAATTCGGAAAGGATTACGGCGACGCCAAAATCAGGAGGCCCTAGCTATGTATACGAAATCCGTGTGAAGAGTTGGTG
GGTGAACGCCGGCGAGGCTTTCATGATATACAGCCTTGCTGAAAATTTTTGCAGCAGCAATGGCTACACGCTCCCCAGAG
CAAACTATTTAAACCACTGTAGTTCCCGAGGCATCGGGTCACTGTACAGTGAATGGGGAGATATGGGGCATTACACGACT
GACGCTGGTTTTCAATCAAATATGTATTGGTCATCTAGTCCCGCAAACTCAAGCGAACAATACGTAGTTTCCCTGGCAAC
AGGTGATCAAAGCGTATTTGAAAAGCTTGGGTTTGCTTATGCGACATGTTATAAAAACCTGTGA

Upstream 100 bases:

>100_bases
TGCAACTCACACCCAAAACTGCCTAACGAAAAGTTATTAATTTTCAATCATATTGCTATCAGTATTTACATTTTTTCGCT
GTGCTAGAAAGGGCGCATTT

Downstream 100 bases:

>100_bases
TTTTCCGTTATAATTTCTTAAAGAGTGTTCCATTCGGGGCACTCTTTTTTACATTCCCTCTACAGAACTAGCCCTTCTCT
CACAGAAAATGAATAAATAA

Product: adhesin

Products: NA

Alternate protein names: NA

Number of amino acids: Translated: 2367; Mature: 2367

Protein sequence:

>2367_residues
MLARSGKVSMATKKRSGEEINDRQILCGMGIKLRRLTAGICLITQLAFPMAAAAQGVVNAATQQPVPAQIAIANANTVPY
TLGALESAQSVAERFGISVAELRKLNQFRTFARGFDNVRQGDELDVPAQVSEKKLTPPPGNSSDNLEQQIASTSQQIGSL
LAEDMNSEQAANMARGWASSQASGAMTDWLSRFGTARITLGVDEDFSLKNSQFDFLHPWYETPDNLFFSQHTLHRTDERT
QINNGLGWRHFTPTWMSGINFFFDHDLSRYHSRAGIGAEYWRDYLKLSSNGYLRLTNWRSAPELDNDYEARPANGWDVRA
ESWLPAWPHLGGKLVYEQYYGDEVALFDKDDRQSNPHAITAGLNYTPFPLMTFSAEQRQGKQGENDTRFAVDFTWQPGSA
MQKQLDPNEVAARRSLAGSRYDLVDRNNNIVLEYRKKELVRLTLTDPVTGKSGEVKSLVSSLQTKYALKGYNVEATALEA
AGGKVVTTGKDILVTLPAYRFTSTPETDNTWPIEVTAEDAKGNLSNREQSMVVVQAPTLSQKDSSVSLSTQTLNADSHST
ATLTFIAHDAAGNPVVGLVLSTRHEGVQDITLSDWKDNGDGSYTQILTTGAMSGTLTLMPQLNGVDAAKAPAVVNIISVS
SSRTHSSIKIDKDRYLSGNPIEVTVELRDENDKPVKEQKQQLNNAVSIDNVKPGVTTDWKETADGVYKATYTAYTKGSGL
TAKLLMQNWNEDLHTAGFIIDANPQSAKIATLSASNNGVLANENAANTVSVNVADEGSNPINDHTVTFAVLSGSATSFNN
QNTAKTDVNGLATFDLKSSKQEDNTVEVTLENGVKQTLIVSFVGDSSTAQVDLQKSKNEVVADGNDSVTMTATVRDAKGN
LLNDVMVTFNVNSAEAKLSQTEVNSHDGIATATLTSLKNGDYRVTASVSSGSQANQQVNFIGDQSTAALTLSVPSGDITV
TNTAPQYMTATLQDKNGNPLKDKEITFSVPNDVASKFSISNGGKGMTDSNGVAIASLTGTLAGTHMIMARLANSNVSDAQ
PMTFVADKDRAVVVLQTSKAEIIGNGVDETTLTATVKDPSNHPVAGITVNFTMPQDVAANFTLENNGIAITQANGEAHVT
LKGKKAGTHTVTATLGNNNTSDSQPVTFVADKASAQVVLQISKDEITGNGVDSATLTATVKDQFDNEVNNLPVTFSSASS
GLTLTPGVSNTNESGIAQATLAGVAFGEKTVTASLANNGASDNKTVHFIGDTAAAKIIELTPVPDSIIAGTPQNSSGSVI
TATVVDNNGFPVKGVTVNFTSNAATAEMTNGGQAVTNEQGKATVTYTNTRSSIESGARPDTVEASLENGSSTLSTSINVN
ADASTAHLTLLQALFDTVSAGETTSLYIEVKDNYGNGVPQQEVTLSVSPSEGVTPSNNAIYTTNHDGNFYASFTATKAGV
YQLTATLENGDSMQQTVTYVPNVANAEITLAASKDPVIADNNDLTTLTATVADTEGNAIANTEVTFTLPEDVKANFTLSD
GGKVITDAEGKAKVTLKGTKAGAHTVTASMTGGKSEQLVVNFIADTLTAQVNLNVTEDNFIANNVGMTRLQATVTDGNGN
PLANEAVTFTLPADVSASFTLGQGGSAITDINGKAEVTLSGTKSGTYPVTVSVNNYGVSDTKQVTLIADAGTAKLASLTS
VYSFVVSTTEGATMTASVTDANGNPVEGIKVNFRGTSVTLSSTSVETDDRGFAEILVTSTEVGLKTVSASLADKPTEVIS
RLLNASADVNSATITSLEIPEGQVMVAQDVAVKAHVNDQFGNPVAHQPVTFSAEPSSQMIISQNTVSTNTQGVAEVTMTP
ERNGSYMVKASLPNGASLEKQLEAIDEKLTLTASSPLIGVYAPTGATLTATLTSANGTPVEGQVINFSVTPEGATLSGGK
VRTNSSGQAPVVLTSNKVGTYTVTASFHNGVTIQTQTTVKVTGNSSTAHVASFIADPSTIAATNTDLSTLKATVEDGSGN
LIEGLTVYFALKSGSATLTSLTAVTDQNGIATTSVKGAMTGSVTVSAVTTAGGMQTVDITLVAGPADTSQSVLKSNRSSL
KGDYTDSAELRLVLHDISGNPIKVSEGMEFVQSGTNVPYIKISAIDYSLNINGDYKATVTGGGEGIATLIPVLNGVHQAG
LSTTIQFTRAEDKIMSGTVSVNGTDLPTTTFPSQGFTGAYYQLNNDNFAPGKTAADYEFSSSASWVDVDATGKVTFKNVG
SNSERITATPKSGGPSYVYEIRVKSWWVNAGEAFMIYSLAENFCSSNGYTLPRANYLNHCSSRGIGSLYSEWGDMGHYTT
DAGFQSNMYWSSSPANSSEQYVVSLATGDQSVFEKLGFAYATCYKNL

Sequences:

>Translated_2367_residues
MLARSGKVSMATKKRSGEEINDRQILCGMGIKLRRLTAGICLITQLAFPMAAAAQGVVNAATQQPVPAQIAIANANTVPY
TLGALESAQSVAERFGISVAELRKLNQFRTFARGFDNVRQGDELDVPAQVSEKKLTPPPGNSSDNLEQQIASTSQQIGSL
LAEDMNSEQAANMARGWASSQASGAMTDWLSRFGTARITLGVDEDFSLKNSQFDFLHPWYETPDNLFFSQHTLHRTDERT
QINNGLGWRHFTPTWMSGINFFFDHDLSRYHSRAGIGAEYWRDYLKLSSNGYLRLTNWRSAPELDNDYEARPANGWDVRA
ESWLPAWPHLGGKLVYEQYYGDEVALFDKDDRQSNPHAITAGLNYTPFPLMTFSAEQRQGKQGENDTRFAVDFTWQPGSA
MQKQLDPNEVAARRSLAGSRYDLVDRNNNIVLEYRKKELVRLTLTDPVTGKSGEVKSLVSSLQTKYALKGYNVEATALEA
AGGKVVTTGKDILVTLPAYRFTSTPETDNTWPIEVTAEDAKGNLSNREQSMVVVQAPTLSQKDSSVSLSTQTLNADSHST
ATLTFIAHDAAGNPVVGLVLSTRHEGVQDITLSDWKDNGDGSYTQILTTGAMSGTLTLMPQLNGVDAAKAPAVVNIISVS
SSRTHSSIKIDKDRYLSGNPIEVTVELRDENDKPVKEQKQQLNNAVSIDNVKPGVTTDWKETADGVYKATYTAYTKGSGL
TAKLLMQNWNEDLHTAGFIIDANPQSAKIATLSASNNGVLANENAANTVSVNVADEGSNPINDHTVTFAVLSGSATSFNN
QNTAKTDVNGLATFDLKSSKQEDNTVEVTLENGVKQTLIVSFVGDSSTAQVDLQKSKNEVVADGNDSVTMTATVRDAKGN
LLNDVMVTFNVNSAEAKLSQTEVNSHDGIATATLTSLKNGDYRVTASVSSGSQANQQVNFIGDQSTAALTLSVPSGDITV
TNTAPQYMTATLQDKNGNPLKDKEITFSVPNDVASKFSISNGGKGMTDSNGVAIASLTGTLAGTHMIMARLANSNVSDAQ
PMTFVADKDRAVVVLQTSKAEIIGNGVDETTLTATVKDPSNHPVAGITVNFTMPQDVAANFTLENNGIAITQANGEAHVT
LKGKKAGTHTVTATLGNNNTSDSQPVTFVADKASAQVVLQISKDEITGNGVDSATLTATVKDQFDNEVNNLPVTFSSASS
GLTLTPGVSNTNESGIAQATLAGVAFGEKTVTASLANNGASDNKTVHFIGDTAAAKIIELTPVPDSIIAGTPQNSSGSVI
TATVVDNNGFPVKGVTVNFTSNAATAEMTNGGQAVTNEQGKATVTYTNTRSSIESGARPDTVEASLENGSSTLSTSINVN
ADASTAHLTLLQALFDTVSAGETTSLYIEVKDNYGNGVPQQEVTLSVSPSEGVTPSNNAIYTTNHDGNFYASFTATKAGV
YQLTATLENGDSMQQTVTYVPNVANAEITLAASKDPVIADNNDLTTLTATVADTEGNAIANTEVTFTLPEDVKANFTLSD
GGKVITDAEGKAKVTLKGTKAGAHTVTASMTGGKSEQLVVNFIADTLTAQVNLNVTEDNFIANNVGMTRLQATVTDGNGN
PLANEAVTFTLPADVSASFTLGQGGSAITDINGKAEVTLSGTKSGTYPVTVSVNNYGVSDTKQVTLIADAGTAKLASLTS
VYSFVVSTTEGATMTASVTDANGNPVEGIKVNFRGTSVTLSSTSVETDDRGFAEILVTSTEVGLKTVSASLADKPTEVIS
RLLNASADVNSATITSLEIPEGQVMVAQDVAVKAHVNDQFGNPVAHQPVTFSAEPSSQMIISQNTVSTNTQGVAEVTMTP
ERNGSYMVKASLPNGASLEKQLEAIDEKLTLTASSPLIGVYAPTGATLTATLTSANGTPVEGQVINFSVTPEGATLSGGK
VRTNSSGQAPVVLTSNKVGTYTVTASFHNGVTIQTQTTVKVTGNSSTAHVASFIADPSTIAATNTDLSTLKATVEDGSGN
LIEGLTVYFALKSGSATLTSLTAVTDQNGIATTSVKGAMTGSVTVSAVTTAGGMQTVDITLVAGPADTSQSVLKSNRSSL
KGDYTDSAELRLVLHDISGNPIKVSEGMEFVQSGTNVPYIKISAIDYSLNINGDYKATVTGGGEGIATLIPVLNGVHQAG
LSTTIQFTRAEDKIMSGTVSVNGTDLPTTTFPSQGFTGAYYQLNNDNFAPGKTAADYEFSSSASWVDVDATGKVTFKNVG
SNSERITATPKSGGPSYVYEIRVKSWWVNAGEAFMIYSLAENFCSSNGYTLPRANYLNHCSSRGIGSLYSEWGDMGHYTT
DAGFQSNMYWSSSPANSSEQYVVSLATGDQSVFEKLGFAYATCYKNL
>Mature_2367_residues
MLARSGKVSMATKKRSGEEINDRQILCGMGIKLRRLTAGICLITQLAFPMAAAAQGVVNAATQQPVPAQIAIANANTVPY
TLGALESAQSVAERFGISVAELRKLNQFRTFARGFDNVRQGDELDVPAQVSEKKLTPPPGNSSDNLEQQIASTSQQIGSL
LAEDMNSEQAANMARGWASSQASGAMTDWLSRFGTARITLGVDEDFSLKNSQFDFLHPWYETPDNLFFSQHTLHRTDERT
QINNGLGWRHFTPTWMSGINFFFDHDLSRYHSRAGIGAEYWRDYLKLSSNGYLRLTNWRSAPELDNDYEARPANGWDVRA
ESWLPAWPHLGGKLVYEQYYGDEVALFDKDDRQSNPHAITAGLNYTPFPLMTFSAEQRQGKQGENDTRFAVDFTWQPGSA
MQKQLDPNEVAARRSLAGSRYDLVDRNNNIVLEYRKKELVRLTLTDPVTGKSGEVKSLVSSLQTKYALKGYNVEATALEA
AGGKVVTTGKDILVTLPAYRFTSTPETDNTWPIEVTAEDAKGNLSNREQSMVVVQAPTLSQKDSSVSLSTQTLNADSHST
ATLTFIAHDAAGNPVVGLVLSTRHEGVQDITLSDWKDNGDGSYTQILTTGAMSGTLTLMPQLNGVDAAKAPAVVNIISVS
SSRTHSSIKIDKDRYLSGNPIEVTVELRDENDKPVKEQKQQLNNAVSIDNVKPGVTTDWKETADGVYKATYTAYTKGSGL
TAKLLMQNWNEDLHTAGFIIDANPQSAKIATLSASNNGVLANENAANTVSVNVADEGSNPINDHTVTFAVLSGSATSFNN
QNTAKTDVNGLATFDLKSSKQEDNTVEVTLENGVKQTLIVSFVGDSSTAQVDLQKSKNEVVADGNDSVTMTATVRDAKGN
LLNDVMVTFNVNSAEAKLSQTEVNSHDGIATATLTSLKNGDYRVTASVSSGSQANQQVNFIGDQSTAALTLSVPSGDITV
TNTAPQYMTATLQDKNGNPLKDKEITFSVPNDVASKFSISNGGKGMTDSNGVAIASLTGTLAGTHMIMARLANSNVSDAQ
PMTFVADKDRAVVVLQTSKAEIIGNGVDETTLTATVKDPSNHPVAGITVNFTMPQDVAANFTLENNGIAITQANGEAHVT
LKGKKAGTHTVTATLGNNNTSDSQPVTFVADKASAQVVLQISKDEITGNGVDSATLTATVKDQFDNEVNNLPVTFSSASS
GLTLTPGVSNTNESGIAQATLAGVAFGEKTVTASLANNGASDNKTVHFIGDTAAAKIIELTPVPDSIIAGTPQNSSGSVI
TATVVDNNGFPVKGVTVNFTSNAATAEMTNGGQAVTNEQGKATVTYTNTRSSIESGARPDTVEASLENGSSTLSTSINVN
ADASTAHLTLLQALFDTVSAGETTSLYIEVKDNYGNGVPQQEVTLSVSPSEGVTPSNNAIYTTNHDGNFYASFTATKAGV
YQLTATLENGDSMQQTVTYVPNVANAEITLAASKDPVIADNNDLTTLTATVADTEGNAIANTEVTFTLPEDVKANFTLSD
GGKVITDAEGKAKVTLKGTKAGAHTVTASMTGGKSEQLVVNFIADTLTAQVNLNVTEDNFIANNVGMTRLQATVTDGNGN
PLANEAVTFTLPADVSASFTLGQGGSAITDINGKAEVTLSGTKSGTYPVTVSVNNYGVSDTKQVTLIADAGTAKLASLTS
VYSFVVSTTEGATMTASVTDANGNPVEGIKVNFRGTSVTLSSTSVETDDRGFAEILVTSTEVGLKTVSASLADKPTEVIS
RLLNASADVNSATITSLEIPEGQVMVAQDVAVKAHVNDQFGNPVAHQPVTFSAEPSSQMIISQNTVSTNTQGVAEVTMTP
ERNGSYMVKASLPNGASLEKQLEAIDEKLTLTASSPLIGVYAPTGATLTATLTSANGTPVEGQVINFSVTPEGATLSGGK
VRTNSSGQAPVVLTSNKVGTYTVTASFHNGVTIQTQTTVKVTGNSSTAHVASFIADPSTIAATNTDLSTLKATVEDGSGN
LIEGLTVYFALKSGSATLTSLTAVTDQNGIATTSVKGAMTGSVTVSAVTTAGGMQTVDITLVAGPADTSQSVLKSNRSSL
KGDYTDSAELRLVLHDISGNPIKVSEGMEFVQSGTNVPYIKISAIDYSLNINGDYKATVTGGGEGIATLIPVLNGVHQAG
LSTTIQFTRAEDKIMSGTVSVNGTDLPTTTFPSQGFTGAYYQLNNDNFAPGKTAADYEFSSSASWVDVDATGKVTFKNVG
SNSERITATPKSGGPSYVYEIRVKSWWVNAGEAFMIYSLAENFCSSNGYTLPRANYLNHCSSRGIGSLYSEWGDMGHYTT
DAGFQSNMYWSSSPANSSEQYVVSLATGDQSVFEKLGFAYATCYKNL

Specific function: Unknown

COG id: NA

COG function: NA

Gene ontology:

Cell location: Cytoplasmic

Metaboloic importance: Unknown [C]

Operon status: Not Known

Operon components: None

Similarity: Contains 13 Big-1 (bacterial Ig-like domain 1) domains [H]

Homologues:

Organism=Escherichia coli, GI145693153, Length=2358, Percent_Identity=99.9151823579304, Blast_Score=4788, Evalue=0.0,
Organism=Escherichia coli, GI145693120, Length=361, Percent_Identity=32.409972299169, Blast_Score=166, Evalue=2e-41,

Paralogues:

None

Copy number: NA

Swissprot (AC and ID): NA

Other databases:

- InterPro:   IPR003344
- InterPro:   IPR003535
- InterPro:   IPR008964
- InterPro:   IPR022409 [H]

Pfam domain/function: PF02369 Big_1 [H]

EC number: NA

Molecular weight: Translated: 249503; Mature: 249503

Theoretical pI: Translated: 4.62; Mature: 4.62

Prosite motif: PS51127 BIG1

Important sites: NA

Signals:

None

Transmembrane regions:

None

Cys/Met content:

0.2 %Cys     (Translated Protein)
1.6 %Met     (Translated Protein)
1.8 %Cys+Met (Translated Protein)
0.2 %Cys     (Mature Protein)
1.6 %Met     (Mature Protein)
1.8 %Cys+Met (Mature Protein)

Secondary structure:

>Translated Secondary Structure
MLARSGKVSMATKKRSGEEINDRQILCGMGIKLRRLTAGICLITQLAFPMAAAAQGVVNA
CCCCCCCEEEEECCCCCCCCCCCEEEECCCCEEEHHHHHHHHHHHHHHHHHHHHHHHHHH
ATQQPVPAQIAIANANTVPYTLGALESAQSVAERFGISVAELRKLNQFRTFARGFDNVRQ
HCCCCCCEEEEEECCCCCCEEHHHHHHHHHHHHHHCCCHHHHHHHHHHHHHHHHHHHHCC
GDELDVPAQVSEKKLTPPPGNSSDNLEQQIASTSQQIGSLLAEDMNSEQAANMARGWASS
CCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHHHHHHHHCCCHHHHHHHHCCCCC
QASGAMTDWLSRFGTARITLGVDEDFSLKNSQFDFLHPWYETPDNLFFSQHTLHRTDERT
CCCCHHHHHHHHCCCEEEEEECCCCCCCCCCCCCEECCCCCCCCCEEECCCHHCCCCCHH
QINNGLGWRHFTPTWMSGINFFFDHDLSRYHSRAGIGAEYWRDYLKLSSNGYLRLTNWRS
HHCCCCCCCCCCHHHHHHCHHEECCCHHHHHHHCCCCHHHHHHHHEECCCCEEEEECCCC
APELDNDYEARPANGWDVRAESWLPAWPHLGGKLVYEQYYGDEVALFDKDDRQSNPHAIT
CCCCCCCCCCCCCCCCEEEECCCCCCCCCCCCEEEEEECCCCEEEEEECCCCCCCCCEEE
AGLNYTPFPLMTFSAEQRQGKQGENDTRFAVDFTWQPGSAMQKQLDPNEVAARRSLAGSR
ECCCCCCCEEEEECCHHHCCCCCCCCCEEEEEEEECCCHHHHHCCCHHHHHHHHHHCCCC
YDLVDRNNNIVLEYRKKELVRLTLTDPVTGKSGEVKSLVSSLQTKYALKGYNVEATALEA
EEEEECCCCEEEEEECCEEEEEEECCCCCCCCCHHHHHHHHHHHHHEECCCCEEEEEEEC
AGGKVVTTGKDILVTLPAYRFTSTPETDNTWPIEVTAEDAKGNLSNREQSMVVVQAPTLS
CCCEEEECCCEEEEEECCEEECCCCCCCCEEEEEEEECCCCCCCCCCCCEEEEEECCCCC
QKDSSVSLSTQTLNADSHSTATLTFIAHDAAGNPVVGLVLSTRHEGVQDITLSDWKDNGD
CCCCCEEEEEEEECCCCCCEEEEEEEEECCCCCCEEEEEEECCCCCCEEEEEECCCCCCC
GSYTQILTTGAMSGTLTLMPQLNGVDAAKAPAVVNIISVSSSRTHSSIKIDKDRYLSGNP
CCEEEEEEECCCCCEEEEEECCCCCCCCCCCEEEEEEEECCCCCCCEEEECCCCCCCCCC
IEVTVELRDENDKPVKEQKQQLNNAVSIDNVKPGVTTDWKETADGVYKATYTAYTKGSGL
EEEEEEEECCCCCCHHHHHHHHCCCEEECCCCCCCCCCHHHHCCCEEEEEEEEEECCCCC
TAKLLMQNWNEDLHTAGFIIDANPQSAKIATLSASNNGVLANENAANTVSVNVADEGSNP
CHHHHHHHCCCCHHHEEEEEECCCCCCEEEEEECCCCCEEECCCCCCEEEEEEECCCCCC
INDHTVTFAVLSGSATSFNNQNTAKTDVNGLATFDLKSSKQEDNTVEVTLENGVKQTLIV
CCCCEEEEEEEECCCCCCCCCCCCCCCCCCEEEEEECCCCCCCCEEEEEECCCCCEEEEE
SFVGDSSTAQVDLQKSKNEVVADGNDSVTMTATVRDAKGNLLNDVMVTFNVNSAEAKLSQ
EEECCCCCEEEEEECCCCCEEECCCCCEEEEEEEECCCCCEEEEEEEEEECCHHHHEEEH
TEVNSHDGIATATLTSLKNGDYRVTASVSSGSQANQQVNFIGDQSTAALTLSVPSGDITV
HCCCCCCCEEEEEEECCCCCCEEEEEEECCCCCCCCEEEEECCCCCEEEEEEECCCCEEE
TNTAPQYMTATLQDKNGNPLKDKEITFSVPNDVASKFSISNGGKGMTDSNGVAIASLTGT
ECCCCCEEEEEEECCCCCCCCCCEEEEECCHHHHHHEEECCCCCCCCCCCCEEEEEECCH
LAGTHMIMARLANSNVSDAQPMTFVADKDRAVVVLQTSKAEIIGNGVDETTLTATVKDPS
HHHHHHHHHHHHCCCCCCCCCEEEEECCCCEEEEEEECCCEEECCCCCCCEEEEEEECCC
NHPVAGITVNFTMPQDVAANFTLENNGIAITQANGEAHVTLKGKKAGTHTVTATLGNNNT
CCCEEEEEEEEECCCHHEEEEEEECCCEEEEECCCEEEEEEECCCCCCEEEEEEECCCCC
SDSQPVTFVADKASAQVVLQISKDEITGNGVDSATLTATVKDQFDNEVNNLPVTFSSASS
CCCCCEEEEEECCCEEEEEEEECCCCCCCCCCCEEEEEEEHHHCCCHHCCCCEEEECCCC
GLTLTPGVSNTNESGIAQATLAGVAFGEKTVTASLANNGASDNKTVHFIGDTAAAKIIEL
CCEECCCCCCCCCCCCHHEEEHEEEECCCEEEEEECCCCCCCCCEEEEEECCCCEEEEEE
TPVPDSIIAGTPQNSSGSVITATVVDNNGFPVKGVTVNFTSNAATAEMTNGGQAVTNEQG
ECCCCHHEECCCCCCCCCEEEEEEECCCCCEEEEEEEEECCCCCEEEECCCCCEEECCCC
KATVTYTNTRSSIESGARPDTVEASLENGSSTLSTSINVNADASTAHLTLLQALFDTVSA
CEEEEEECCHHHHHCCCCCCEEEEECCCCCCEEEEEEEECCCCCHHHHHHHHHHHHHHCC
GETTSLYIEVKDNYGNGVPQQEVTLSVSPSEGVTPSNNAIYTTNHDGNFYASFTATKAGV
CCEEEEEEEEECCCCCCCCCCEEEEEECCCCCCCCCCCEEEEECCCCCEEEEEEECCCCE
YQLTATLENGDSMQQTVTYVPNVANAEITLAASKDPVIADNNDLTTLTATVADTEGNAIA
EEEEEEECCCCCHHHHHEECCCCCCCEEEEEECCCCEEECCCCEEEEEEEEEECCCCEEE
NTEVTFTLPEDVKANFTLSDGGKVITDAEGKAKVTLKGTKAGAHTVTASMTGGKSEQLVV
CCEEEEECCCCCCEEEEECCCCEEEECCCCCEEEEEEECCCCCEEEEEEECCCCCCEEEE
NFIADTLTAQVNLNVTEDNFIANNVGMTRLQATVTDGNGNPLANEAVTFTLPADVSASFT
EEECCCEEEEEEEEEECCCEEECCCCEEEEEEEEECCCCCCCCCCEEEEEECCCCCEEEE
LGQGGSAITDINGKAEVTLSGTKSGTYPVTVSVNNYGVSDTKQVTLIADAGTAKLASLTS
ECCCCCEEEECCCEEEEEEECCCCCCEEEEEEECCCCCCCCCEEEEEEECCCHHHHHHHH
VYSFVVSTTEGATMTASVTDANGNPVEGIKVNFRGTSVTLSSTSVETDDRGFAEILVTST
HHHHEEECCCCCEEEEEEECCCCCCCCEEEEEEECCEEEEECCCCCCCCCCEEEEEEEEC
EVGLKTVSASLADKPTEVISRLLNASADVNSATITSLEIPEGQVMVAQDVAVKAHVNDQF
CCCCEEEHHHHCCCHHHHHHHHHCCCCCCCCEEEEEEECCCCCEEEEECEEEEEECCCCC
GNPVAHQPVTFSAEPSSQMIISQNTVSTNTQGVAEVTMTPERNGSYMVKASLPNGASLEK
CCCCCCCCEEEECCCCCCEEEEECCCCCCCCCEEEEEECCCCCCCEEEEEECCCCCCHHH
QLEAIDEKLTLTASSPLIGVYAPTGATLTATLTSANGTPVEGQVINFSVTPEGATLSGGK
HHHHHCCEEEEEECCCEEEEEECCCCEEEEEEECCCCCCCCCEEEEEEECCCCCEECCCE
VRTNSSGQAPVVLTSNKVGTYTVTASFHNGVTIQTQTTVKVTGNSSTAHVASFIADPSTI
EEECCCCCCCEEEECCCCEEEEEEEECCCCEEEEEEEEEEEECCCCHHHHHHHHCCCCCE
AATNTDLSTLKATVEDGSGNLIEGLTVYFALKSGSATLTSLTAVTDQNGIATTSVKGAMT
EECCCCHHHEEEEEECCCCCEEEEEEEEEEEECCCCEEEEEEEEECCCCEEEEEECCEEE
GSVTVSAVTTAGGMQTVDITLVAGPADTSQSVLKSNRSSLKGDYTDSAELRLVLHDISGN
CCEEEEEEEECCCEEEEEEEEEECCCCCHHHHHHCCHHHCCCCCCCCCEEEEEEEECCCC
PIKVSEGMEFVQSGTNVPYIKISAIDYSLNINGDYKATVTGGGEGIATLIPVLNGVHQAG
EEEHHCCHHHHHCCCCCCEEEEEEEEEEEECCCCEEEEEECCCCCHHHHHHHHHHHHHCC
LSTTIQFTRAEDKIMSGTVSVNGTDLPTTTFPSQGFTGAYYQLNNDNFAPGKTAADYEFS
CCEEEEEEECCCCEEEEEEEECCCCCCCCCCCCCCCCEEEEEECCCCCCCCCCCCCCEEC
SSASWVDVDATGKVTFKNVGSNSERITATPKSGGPSYVYEIRVKSWWVNAGEAFMIYSLA
CCCCEEEECCCCEEEEEECCCCCCEEEECCCCCCCCEEEEEEEEEEEECCCCEEEEEEHH
ENFCSSNGYTLPRANYLNHCSSRGIGSLYSEWGDMGHYTTDAGFQSNMYWSSSPANSSEQ
HHHHCCCCEECCCCHHHHHHCCCCCHHHHHHHCCCCCEECCCCCCCCEEECCCCCCCCCE
YVVSLATGDQSVFEKLGFAYATCYKNL
EEEEEECCCHHHHHHHCHHEEHHHCCC
>Mature Secondary Structure
MLARSGKVSMATKKRSGEEINDRQILCGMGIKLRRLTAGICLITQLAFPMAAAAQGVVNA
CCCCCCCEEEEECCCCCCCCCCCEEEECCCCEEEHHHHHHHHHHHHHHHHHHHHHHHHHH
ATQQPVPAQIAIANANTVPYTLGALESAQSVAERFGISVAELRKLNQFRTFARGFDNVRQ
HCCCCCCEEEEEECCCCCCEEHHHHHHHHHHHHHHCCCHHHHHHHHHHHHHHHHHHHHCC
GDELDVPAQVSEKKLTPPPGNSSDNLEQQIASTSQQIGSLLAEDMNSEQAANMARGWASS
CCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHHHHHHHHCCCHHHHHHHHCCCCC
QASGAMTDWLSRFGTARITLGVDEDFSLKNSQFDFLHPWYETPDNLFFSQHTLHRTDERT
CCCCHHHHHHHHCCCEEEEEECCCCCCCCCCCCCEECCCCCCCCCEEECCCHHCCCCCHH
QINNGLGWRHFTPTWMSGINFFFDHDLSRYHSRAGIGAEYWRDYLKLSSNGYLRLTNWRS
HHCCCCCCCCCCHHHHHHCHHEECCCHHHHHHHCCCCHHHHHHHHEECCCCEEEEECCCC
APELDNDYEARPANGWDVRAESWLPAWPHLGGKLVYEQYYGDEVALFDKDDRQSNPHAIT
CCCCCCCCCCCCCCCCEEEECCCCCCCCCCCCEEEEEECCCCEEEEEECCCCCCCCCEEE
AGLNYTPFPLMTFSAEQRQGKQGENDTRFAVDFTWQPGSAMQKQLDPNEVAARRSLAGSR
ECCCCCCCEEEEECCHHHCCCCCCCCCEEEEEEEECCCHHHHHCCCHHHHHHHHHHCCCC
YDLVDRNNNIVLEYRKKELVRLTLTDPVTGKSGEVKSLVSSLQTKYALKGYNVEATALEA
EEEEECCCCEEEEEECCEEEEEEECCCCCCCCCHHHHHHHHHHHHHEECCCCEEEEEEEC
AGGKVVTTGKDILVTLPAYRFTSTPETDNTWPIEVTAEDAKGNLSNREQSMVVVQAPTLS
CCCEEEECCCEEEEEECCEEECCCCCCCCEEEEEEEECCCCCCCCCCCCEEEEEECCCCC
QKDSSVSLSTQTLNADSHSTATLTFIAHDAAGNPVVGLVLSTRHEGVQDITLSDWKDNGD
CCCCCEEEEEEEECCCCCCEEEEEEEEECCCCCCEEEEEEECCCCCCEEEEEECCCCCCC
GSYTQILTTGAMSGTLTLMPQLNGVDAAKAPAVVNIISVSSSRTHSSIKIDKDRYLSGNP
CCEEEEEEECCCCCEEEEEECCCCCCCCCCCEEEEEEEECCCCCCCEEEECCCCCCCCCC
IEVTVELRDENDKPVKEQKQQLNNAVSIDNVKPGVTTDWKETADGVYKATYTAYTKGSGL
EEEEEEEECCCCCCHHHHHHHHCCCEEECCCCCCCCCCHHHHCCCEEEEEEEEEECCCCC
TAKLLMQNWNEDLHTAGFIIDANPQSAKIATLSASNNGVLANENAANTVSVNVADEGSNP
CHHHHHHHCCCCHHHEEEEEECCCCCCEEEEEECCCCCEEECCCCCCEEEEEEECCCCCC
INDHTVTFAVLSGSATSFNNQNTAKTDVNGLATFDLKSSKQEDNTVEVTLENGVKQTLIV
CCCCEEEEEEEECCCCCCCCCCCCCCCCCCEEEEEECCCCCCCCEEEEEECCCCCEEEEE
SFVGDSSTAQVDLQKSKNEVVADGNDSVTMTATVRDAKGNLLNDVMVTFNVNSAEAKLSQ
EEECCCCCEEEEEECCCCCEEECCCCCEEEEEEEECCCCCEEEEEEEEEECCHHHHEEEH
TEVNSHDGIATATLTSLKNGDYRVTASVSSGSQANQQVNFIGDQSTAALTLSVPSGDITV
HCCCCCCCEEEEEEECCCCCCEEEEEEECCCCCCCCEEEEECCCCCEEEEEEECCCCEEE
TNTAPQYMTATLQDKNGNPLKDKEITFSVPNDVASKFSISNGGKGMTDSNGVAIASLTGT
ECCCCCEEEEEEECCCCCCCCCCEEEEECCHHHHHHEEECCCCCCCCCCCCEEEEEECCH
LAGTHMIMARLANSNVSDAQPMTFVADKDRAVVVLQTSKAEIIGNGVDETTLTATVKDPS
HHHHHHHHHHHHCCCCCCCCCEEEEECCCCEEEEEEECCCEEECCCCCCCEEEEEEECCC
NHPVAGITVNFTMPQDVAANFTLENNGIAITQANGEAHVTLKGKKAGTHTVTATLGNNNT
CCCEEEEEEEEECCCHHEEEEEEECCCEEEEECCCEEEEEEECCCCCCEEEEEEECCCCC
SDSQPVTFVADKASAQVVLQISKDEITGNGVDSATLTATVKDQFDNEVNNLPVTFSSASS
CCCCCEEEEEECCCEEEEEEEECCCCCCCCCCCEEEEEEEHHHCCCHHCCCCEEEECCCC
GLTLTPGVSNTNESGIAQATLAGVAFGEKTVTASLANNGASDNKTVHFIGDTAAAKIIEL
CCEECCCCCCCCCCCCHHEEEHEEEECCCEEEEEECCCCCCCCCEEEEEECCCCEEEEEE
TPVPDSIIAGTPQNSSGSVITATVVDNNGFPVKGVTVNFTSNAATAEMTNGGQAVTNEQG
ECCCCHHEECCCCCCCCCEEEEEEECCCCCEEEEEEEEECCCCCEEEECCCCCEEECCCC
KATVTYTNTRSSIESGARPDTVEASLENGSSTLSTSINVNADASTAHLTLLQALFDTVSA
CEEEEEECCHHHHHCCCCCCEEEEECCCCCCEEEEEEEECCCCCHHHHHHHHHHHHHHCC
GETTSLYIEVKDNYGNGVPQQEVTLSVSPSEGVTPSNNAIYTTNHDGNFYASFTATKAGV
CCEEEEEEEEECCCCCCCCCCEEEEEECCCCCCCCCCCEEEEECCCCCEEEEEEECCCCE
YQLTATLENGDSMQQTVTYVPNVANAEITLAASKDPVIADNNDLTTLTATVADTEGNAIA
EEEEEEECCCCCHHHHHEECCCCCCCEEEEEECCCCEEECCCCEEEEEEEEEECCCCEEE
NTEVTFTLPEDVKANFTLSDGGKVITDAEGKAKVTLKGTKAGAHTVTASMTGGKSEQLVV
CCEEEEECCCCCCEEEEECCCCEEEECCCCCEEEEEEECCCCCEEEEEEECCCCCCEEEE
NFIADTLTAQVNLNVTEDNFIANNVGMTRLQATVTDGNGNPLANEAVTFTLPADVSASFT
EEECCCEEEEEEEEEECCCEEECCCCEEEEEEEEECCCCCCCCCCEEEEEECCCCCEEEE
LGQGGSAITDINGKAEVTLSGTKSGTYPVTVSVNNYGVSDTKQVTLIADAGTAKLASLTS
ECCCCCEEEECCCEEEEEEECCCCCCEEEEEEECCCCCCCCCEEEEEEECCCHHHHHHHH
VYSFVVSTTEGATMTASVTDANGNPVEGIKVNFRGTSVTLSSTSVETDDRGFAEILVTST
HHHHEEECCCCCEEEEEEECCCCCCCCEEEEEEECCEEEEECCCCCCCCCCEEEEEEEEC
EVGLKTVSASLADKPTEVISRLLNASADVNSATITSLEIPEGQVMVAQDVAVKAHVNDQF
CCCCEEEHHHHCCCHHHHHHHHHCCCCCCCCEEEEEEECCCCCEEEEECEEEEEECCCCC
GNPVAHQPVTFSAEPSSQMIISQNTVSTNTQGVAEVTMTPERNGSYMVKASLPNGASLEK
CCCCCCCCEEEECCCCCCEEEEECCCCCCCCCEEEEEECCCCCCCEEEEEECCCCCCHHH
QLEAIDEKLTLTASSPLIGVYAPTGATLTATLTSANGTPVEGQVINFSVTPEGATLSGGK
HHHHHCCEEEEEECCCEEEEEECCCCEEEEEEECCCCCCCCCEEEEEEECCCCCEECCCE
VRTNSSGQAPVVLTSNKVGTYTVTASFHNGVTIQTQTTVKVTGNSSTAHVASFIADPSTI
EEECCCCCCCEEEECCCCEEEEEEEECCCCEEEEEEEEEEEECCCCHHHHHHHHCCCCCE
AATNTDLSTLKATVEDGSGNLIEGLTVYFALKSGSATLTSLTAVTDQNGIATTSVKGAMT
EECCCCHHHEEEEEECCCCCEEEEEEEEEEEECCCCEEEEEEEEECCCCEEEEEECCEEE
GSVTVSAVTTAGGMQTVDITLVAGPADTSQSVLKSNRSSLKGDYTDSAELRLVLHDISGN
CCEEEEEEEECCCEEEEEEEEEECCCCCHHHHHHCCHHHCCCCCCCCCEEEEEEEECCCC
PIKVSEGMEFVQSGTNVPYIKISAIDYSLNINGDYKATVTGGGEGIATLIPVLNGVHQAG
EEEHHCCHHHHHCCCCCCEEEEEEEEEEEECCCCEEEEEECCCCCHHHHHHHHHHHHHCC
LSTTIQFTRAEDKIMSGTVSVNGTDLPTTTFPSQGFTGAYYQLNNDNFAPGKTAADYEFS
CCEEEEEEECCCCEEEEEEEECCCCCCCCCCCCCCCCEEEEEECCCCCCCCCCCCCCEEC
SSASWVDVDATGKVTFKNVGSNSERITATPKSGGPSYVYEIRVKSWWVNAGEAFMIYSLA
CCCCEEEECCCCEEEEEECCCCCCEEEECCCCCCCCEEEEEEEEEEEECCCCEEEEEEHH
ENFCSSNGYTLPRANYLNHCSSRGIGSLYSEWGDMGHYTTDAGFQSNMYWSSSPANSSEQ
HHHHCCCCEECCCCHHHHHHCCCCCHHHHHHHCCCCCEECCCCCCCCEEECCCCCCCCCE
YVVSLATGDQSVFEKLGFAYATCYKNL
EEEEEECCCHHHHHHHCHHEEHHHCCC

PDB accession: NA

Resolution: NA

Structure class: Unstructured

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: 9097040; 9278503 [H]