| 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]