| Definition | Pseudomonas syringae pv. syringae B728a, complete genome. |
|---|---|
| Accession | NC_007005 |
| Length | 6,093,698 |
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The map label for this gene is lgrC [H]
Identifier: 66045198
GI number: 66045198
Start: 2244792
End: 2252792
Strand: Direct
Name: lgrC [H]
Synonym: Psyr_1958
Alternate gene names: 66045198
Gene position: 2244792-2252792 (Clockwise)
Preceding gene: 66045197
Following gene: 66045199
Centisome position: 36.84
GC content: 63.35
Gene sequence:
>8001_bases ATGACCGGGACCACTGCTGCACGCATCGCGAAACGTTTTGTCGGCCTGTCGCTGGAGCAACGCCAGCAGTTCCTCGCCCG GTTGCGCCAGGAAGGCAAGGATTTCAGCCTGTTGCCGGTGCCGGTCAGTCGGCATGATGTCAGCGCCATTCCACTGTCCT TCGCTCAGCAGCGCCTGTTGTTCCTCTGGCAGCTCGATCCGTCGAGCGACGCGTACAAGATGACCACCGGCCTGCGTCTG CGCGGCACGTTGAACGAGTCGGCGTTGCGCCGCGCATTCGATCATCTGATCGAACGCCACGAGGTGCTGCGCACGGTGTT TCACACCGATGGCGATCAGGCGCAGCAGGTGCTGATGCACGACCAGACAGTCGCATTGGAAAGCGTTGATTTGACCGGTC TGGCCGATGTCGAACTGCGCGATGCCGAGCTGGCGCTGCAAGTGGCCACAGTCACCGGCCAGCCGTTTGATCTGCGCACC GGGCCGCTGCTGCGCGCGCACCTGTTCCGCCTGGCGGGCGATGAGCATGTGCTGATCGTGAGCATGCACCACATCGTCTC CGACGGCTGGTCGATGGACGTGATGATTCAGGAGTTCGTGCACTGCTATCAGGCGTACTGCGAAGGTCGCGAGGCCGCAC TGCCGGAACTGCCGCTGCAATACGCCGACTATGCGATCTGGCAGCGCAGCTGGCTGGAGGCAGGCGAGGGCGCACGTCAG CTGGACTACTGGCGTAACCAGTTGGGCGAAGAGCAACCGTTGCTGGACGCTGCACCGGATTTCCCGCGCCCGGCCACGCA GAGCTATCAGGGCGAGCACCTGCGCTTCGATTTCGGCGTTGATCTGTCGCGGCGGCTCAACGCTTTTGCGCGCACGCAGG GCATGACCCTGTTCATGCTGGTGCTGGCCGGCTTTTCGTTGTTTCTGTCGCGCAAGGCCGGGCAGCGTGATATCCGCATC GGCGTGCCGAATGCCAACCGCGGTCGCGCGGAAACCGAAGGGTTGATCGGCTTCTTCATCAATACTCAGGTCTTGCGCTG CCAGGTGGACGAACGCCTGAGCTACCTTGACCTGCTGGCGCAGATTCGCGACACCTCGTTCGGTGCGCAGGCGCATCAAG ACGTGCCCTTCGAGCAACTGGTCGATCAACTGGCGCCCGAGCGCAGCCTGGGCCACAACCCGCTGTTCCAGGCCAAGTTC AACCAGAACGTGGTCCTCAAGCAGAAAACCGCGCTCAGGCTGGCCGGGCTGGAAGTCAGCGAATATGCCTTCGACAAACA GGGTGCGCATTTCGATCTGGCGCTGGACATCACCGACGACGGCACACTGATCCACGGCGACATGGCCTACGCCAGCGACC TGTATCGACGCACCACCGTCGAAGGTTTCATCCCGGAACTGCTCGCACTGTTCGAAACCCTGCTCGACGCCCCGCAGGCA CCGCTGTTCAGCCTGGGAGCACTGGCGATCGAGCCGAGGCGCGAAGCTCGCGAACCCGCGCCGCACATGCTGCAACTGTG GGATCGGCAGGTCGAACGGCAACCTCATGCCCAGGCAGCCCGCAGCCTGGAGCGCACGCTGACCACGCTGCAACTGGAGC AGGCCGCCAATCAGCTGGCTCATCACCTTATCCGCATGGGCATCAGTGAGGGCCAGCCGGTCGCGGTATTGATGGAGCGT TCGCTGGACTGGCTGACCGCCGTGCTGGCGATTTTCAAGGCCGGCGGCGTGTACATGCCGCTGGATGTCAAAGCCCCGGA TGCGCGATTGCAACAGATGCTGATCAATGCGCAGGCCAGGGTGTTGCTGTGTGCTGAGGGGGATGTGCGGCAGACGTCAT TGGGTGTTGCCGGTTGTCAGGGCCTGACCTGGACGCCTGCGCTGTGGCAGGACCTGCCTGTCAGTCGCCCTGATACCCGG CCTTCAGCCGATTCGGCGGCCTACGTGATTCATACCTCCGGCTCGACCGGGCAGCCCAAGGGCGTACTGGTCAGCCAGGG TGCGCTGGCCAGTTACCTGCGCGGCTTGCTGGAACAACTGCATTTGGCGCCAGAGGCAAGCATGGCGCTGGTCTCGACCA TCGCCGCCGACCTCGGCCATACCGTGCTGTTCGGCGCGCTGTGTTCGGGGCGCACGCTGCACGTGCTGACCGAGGCGCTG GGTTTCGACCCGGATGCCTTTGCGGCCTACATGGCCGAGCATCAGGTGGGCGTGCTGAAAATCGTCCCCGGTCATCTGGC CGCGCTGTTGCAGGCCGGCCAGCCAGCCGACGTATTGCCGCAACATGCACTGATCGTCGGCGGCGAAGCCTGCTCGCCGG CGCTGGTCGAGCAGTTGCGTCAGCTCAAGCCGGGTTGCCGGGTGATCAACCACTACGGGCCGAGCGAAACCACTGTTGGT GTGCTGACTTATGAGGTGCCAGCTTCATCATGCCTTGATCAAAAATTGAAAGCGGACTCGAATCCCTGTGGGAGCGAGCT TGCTCGCGAAAGCGATAGTCCGGCTTTCCCATCTCGCAAGAATGTACAAACCTCTTCGCGAGCAAGCGAAGCGTCGCCCA GCTCGCTCCCACAGCTCCCATGTTTCCCACAGAGCACTGCACACTCTGGCGACCCTCTGCGCAGCGTGCCGGTCGGCACG CCGTTGCCAGGGGCCAGCGCCTACGTGCTGGATGACGTGCTGAACCCGGTCGGCACTCAGGTCGCCGGCGAGCTGTACAT CGGCGGTGACAGCGTGGCGCTGGGCTATATCGGCCAGCCTGCGCTGACCGCCGAGCGCTTCGTGCCGGACCCGTTCGCGC AGGACGGCACGCGCGTCTACCGCAGCGGCGACCGCATGCGCCGCAATCATCAGGGCCTGCTGGAATTCATCGGCCGGGCC GACGATCAGGTCAAAGTGCGCGGTTATCGTGTCGAGCCGGCAGAGGTCGCGCGGGTGTTGCTGGGCCTGGCTTCGGTGGC GCAGGTCAGCGTACTGGCGCTGCCCATCGATGACGATCAGGCCCGCCTGCAACTGGTGGCCTATTGCGTGGCGGCAGGCG GGGCGGACCTGAGTATCGACAGCCTGCGCGAGCAACTGACTGCGTGCTTGCCGGACTACATGGTGCCCGCGCAGATCATG CTGCTGGACAGTCTGCCACTGACCGCCAACGGCAAGCTCGACAAGCGCGCCTTGCCCAAGCCTGGCGTGGTCAAACAGCG TTATACCGCGCCGGTCGGCGAGATCGAGGAAAAGCTCGCCGCCGTGTGGGCGGACGTGCTGAAACTGGAACAGGTCGGCA GCACCGACAACTTCTTCGAACTGGGCGGCGATTCGATCCTCAGTCTGCAGATCATCGCCCGCGCCAAGCGCCAGGGCATC AAGCTCAGCCCCAAGCAATTGTTCGAAAAACAGACCATCGGCCAACTGGCTTCGGTGGCAAAACTGATTCAGAAAAAGCC CGTCGCTGTGGCAGAGCAGATCAGCGGTTCGTTGCCGTTGCTGCCGATTCAGGCACGTTTCTTCGAACTGGACATCCCCG AGCGCCAGCACTGGAATCAGGCGCTGATGCTCAAGCCGTTGCAAACGCTGGAGGCCGCTCATCTTCAGTCGGCATTGACT GCGTTGGTCGAACAGCACGACGCACTGCGTCTGGGTTTCACCCAGCAGAACGGCCAATGGCAGGCCACCTTCGGCGCGCC GAATACTTGCGAGCTGCTCTGGACCCATGAGCTGGACAGCATCGAGCGCTTGCCTGAGCTGGCCGATGAGGCGCAACGCA GCCTGGATCTGAAAAACGGCCCGTTGCTGCGTGCCGTGCTGATCCACCTGCCGCAAGGCGAACAGCGCCTGCTGCTGGTG ATTCATCATCTGCTGGTGGACGGCGTGTCATGGCGGGTGTTGCTGGAAGACCTGCAACAGGCGTACCTCGCCCTGGCGCA GGGCCAGCCGGTAGCACTCGCGGCAAAAACCACGTCGCTCCAGCGTTGGGCCGAGCAATTGCAACAGTACGCGACCGGCC AGACGCTGAAGGCCGAGCGCGATTACTGGCTGCAGGCCTTGCAGGGCGCGGACCAGCCGCTGCCTCGCGACAAGCCCGAA GGCACGATGCGCAATCGCGACGCGGCCCATGCGTCGTCATGGCTGAGCCGGGACCTGACCCACAAGCTGCTGAAAGTCGC GCCTGCCGCGTACCGCACGCACGTCAACGACCTGCTGCTGACGGCGCTGGCCCAGGTTCTGTGCGAATGGAGCCAGCAGC CCTCGGTGCTGATTCAGTTGGAAGGGCATGGCCGTGAAGACCTGTTCGACGAGACTGATCTGAGCCGCACCGTCGGCTGG TTCAGTAGCCTGTTTCCAGTGCGCCTCACGCCGCAGATCGCGCCGGGTGCAAGCCTGTCTGGCATCAAGGAGCAATTGCG TGCAGTGCCCGACAAGGGCATTGGTTACGGCGTGTTGCGCTATATGGGCGAGGCGTCTTTCGCGCAGCAACTGGCTGCCT TGCCGCAGGCGCGGGTCACGTTCAATTACTTGGGCCAGTTCGACGGCAGCTTCAGCGAACACCAAGGCGCGCTGTTCGTA CCGAGTGCCGACAGTTCAGGCACTGCGCTGTGCGAGGACGGGCCGCTGGGCAACTGGCTGAGCCTCAACGGCCAGGTGTT CGACGGTCAGTTGCAACTGGACTGGAGCTTCAGCCGCGAGGTGTATCACGCCTCGACCATCGACACCCTGGCGCGTCGCT ACGAGCAGGCGCTGACCACCCTGATCGAACATTGCACGGCCGGGCATCAAGGCGTCACGCCGTCGGACTTCCCGCTGGCG CGCCTCACCCAGGCGCAGCTTGACGGTCTGCCGATTGCGGCGGGCCAGATCGACGATATCTACCCGCTGTCGCCGATGCA GCAGGGCATGCTGTTTCATTCGCTGTTCGATGAAGGCGCGGGCAACTACATCAACCAGTTGCGGGTGAACATCCATGGGC TGGATGTGCCGCGTTTCCGCAGCGCATGGCAGGCCGCGGTGGACCATCACGACGTGCTGCGCAGCTGTTTTGTCAGTCAG CGCGAACAGTCGCTGCAAGTGGTGCAGCGCCAGGTGACGCTGCCCTTTGTCGAACTGGATGCGCGCGGCCAGCCGGAAAG CTGGCTTGACGACTGGGCGCAGGCCGACCGTCAGCAAGGCTTCGATCTGGCGCAAGGGCCATTGTTGCGCCTGGCCGTGT TGCGCACCGCCGATGACGCGTGGCATCTGGTGTATACCAGCCACCACATCCTCATGGATGGCTGGAGCAGCTCGCGCCTG CTCGGTGAAGTGCTGCAACGCTACAGCGGCCAGATGCCAGCGAAACAGGCAGGCCGCTATCGTGATTACATTCAGTGGCT GCAGCATCAGGACGCCGCCCTCAGCGAGCGTTTCTGGACTGCGCAGCTGGCGGAACTGGACGAGCCGACCCGTTTGCTGC AAGCGTTCAAGTCTTCGGCGCAGGGAGGGGGCTACGGCGATTACATCCAGTTGATCGATGCCGATGGCACCCGACGCCTG AACGCGTTTGCCCGCGAGCAGCGCGTCACCCTCAATACGCTGCTGCAATCGGCCTGGCTGTTGTTGCTGCAACGCTACAC CGGCCAGTCCAGTGTGACCTTTGGCGCGACCGTGGCCGGGCGTCCGGCCGAGTTGCCGGGTGTCGAAGAACAACTGGGGC TGTTCATCAACACCTTGCCGGTCATCGCCAGCCCGCGAGCCGAGCAGACGGTGGCCGACTGGGTGCAGCAAGTGCAGGCG AAGAACCTTGCGCTGCGCGAGCATGAGCACACGCCGCTGTATGACATCCAGCGCTGGGCGCGCAACAGTGGCGAGGCGTT GTTCGACAACATTCTGGTGTTCGAAAACTACCCGGTGTCCGAAGCCCTGCAGCGCGCGCCGGACGGTCTGGTCTTCAGCG ACCTGCGCAATCAGGAGCAGGCGCATTACCCGCTGACCCTGGTGGTCGAGGCCACTGAGGTGCTGTCGGTGCGTTTCAGC TACGACCGCCAGCACTTCAGCGCCGAAGGCATTCTGCAACTGGCGGCGCATTTCGATCACCTGCTGCAGAGCCTCTGCGC ATCGGCAACCACGCCACTCGGCGAACTGGCATTGCCGACCGCCTGGACGCAAAGCGTGCAGCGCTATCCGAGCGAGCACT GCGCCCACCAACGCATCGAAGCCCAGGCCGAGCGTAACCCGCAGGCCATCGCCCTGAGCTTTGGCGATGAGCAACTGAGT TACCGGCAGCTCAACCAGCGTGCCAACCAACTGGCGCACAAACTGCGCGAACAGGGCGTCGGCCCGGATGTGCGCGTCGG GCTGGCCGCCGAGCGCGGTCTGGAGATGATTGTCGGTCTGCTGGCCATCCTCAAGGCCGGTGGTGCTTACGTGCCGCTGG ACCCGGATTACCCGCAGGATCGCCTGAGCTTTCTGATGCACGACAGCGGTATCGAATTGTTGCTGACCCAGGCGTCGCTG CTTGGCAAACTGCCGATCCCCGAACAGGTGCAGATGCTCGATCTGGCTGACGAACTGGACGATTACAGCACCGCAGACCC GATCAATCAGACCGCGCCGGACAACCTGGCCTACGTGATCTACACCTCGGGTTCGACCGGCAAACCCAAAGGCACCTTGC TCGCCCATCACAACCTGATGCGCCTGTTCGCGGCCACGGATGAGTGGTTCGAATTCAGCGAAAAGGACGTGTGGACGCTG TTCCATTCCTTCGCCTTCGACTTTTCGGTGTGGGAGATTTTCGGCGCGCTGCTGCATGGCGGCCGACTGGTGATCGTGCC CCGCGAAGTGACCCGTTCGCCGGAAGATTTCCATGCGCTGCTGGTCGAACAGCAGGTTACGGTGCTCAACCAGACGCCGT CGGCGTTCAAGCAACTGATGCACGTGGCCTGTGATTCATCGCTACCGATGTCGCTGCAGACAGTCATCTTCGGCGGCGAG GCGCTGGACGTCGCCAGTCTGAAGCCCTGGTTCGCGCGTTTCGGCGATCAATCACCGCAACTGATCAACATGTACGGCAT CACCGAAACCACCGTGCATGTGAGCTATCGACCGATCACGCTGGCTGACACGCAGAACCCGGCCAGCCCGATTGGCGAGG CGATTCCCGACCTGTCTTGGTACGTGCTGGACGCCGATTTCAACCCGGTCGCCCAAGGTTGCAGCGGCGAGCTGCACATC GGCCATGCCGGTCTGGCGCGGGGTTACCACAACCGCGCCGCGCTGACTGCCGAGCGCTTCGTGCCGGACCCGTTTTCCAA TGAGGGCGGCCGTCTGTATCGCACTGGCGACCTGGCGCGTTATCGGGCGACAGGCGTGATCGACTACGCCGGGCGCATCG ATCACCAAGTGAAGATTCGTGGCTTCCGCATCGAACTGGGCGAAATCGAAGCGCGGCTGCAAGCGCACCCGGCGGTGCGC GAAGTGAGCGTGCTGGCGCTGGACGGGCAGTTGGCGGCGTACCTGGTGCCTGCTGAGCCTGATCAGGACCAGCCAACCCT GCGTGAAATGCTTAAAAACGAACTCAGGGCGCACCTGCCGGATTACATGGTGCCCACCCATTTCATCGTCCTCGACAGCA TGCCGCTGACCGCCAACGGCAAGCTGGACCGCAAGGCGCTGCCTGCGCCGGACGCCAGTCAGTTGCAGGCCACCTACAGC GCGCCGCAGGGCGAGCTGGAGCAGCAACTGGCCGCGATCTGGGCCGATCTGTTGCAGGTCGAGCGGGTCGGGCGCAACGA CAACTTTTTCGAGCTCGGCGGCCATTCGCTGCTGGCGGTGCAGATGCTCGTGCGGGTGCGCGAACAGTTGCAGCACGAGG TCAGCCTCAAGGATGTCTTCGAGCAACCGCTGCTGGCGGACTTCTGCGCCACGCTGCAGGAAAAAAATGGCGAAAGTGAC CACGCGCAGGACGAATTGACTAAATCACTGGAGGCACTCAAACGTTTATCAGCGGAGGAAATTGATAATTTGATTGCTTA G
Upstream 100 bases:
>100_bases GTGAGCTCGCCGTCGAAGTGGCAGCGCTGACCGAAAACAGCACGGACAACGACTGGAGCGACATGGACCAGTTCATGGAT TCACTGGAGGAATTCGGCGC
Downstream 100 bases:
>100_bases CAGGAGAGACCCCAGTGCAACAGTTGCTTGACTCCGTTAAATCGCTGTCCGCCCGTGAACGCAAGGCGCTGGCGGTGCTG CTCAAGCGTCAAGGGGTGAA
Product: non-ribosomal peptide synthase:amino acid adenylation
Products: pyrophosphate; AMP; enterobactin; pyrophosphate; L-Seryl-AMP [C]
Alternate protein names: ATP-dependent valine adenylase; ValA; Valine activase; ATP-dependent D-valine adenylase; D-ValA; D-valine activase; Valine racemase [ATP-hydrolyzing]; ATP-dependent tryptophan adenylase; TrpA; Tryptophan activase; ATP-dependent D-leucine adenylase; D-LeuA; D-leucine activase; Leucine racemase [ATP-hydrolyzing]; ATP-dependent tryptophan/phenylalanine/tyrosine adenylase; Trp/Phe/TyrA; Tryptophan/phenylalanine/tyrosine activase; ATP-dependent D-leucine adenylase; D-LeuA; D-leucine activase; Leucine racemase [ATP-hydrolyzing] [H]
Number of amino acids: Translated: 2666; Mature: 2665
Protein sequence:
>2666_residues MTGTTAARIAKRFVGLSLEQRQQFLARLRQEGKDFSLLPVPVSRHDVSAIPLSFAQQRLLFLWQLDPSSDAYKMTTGLRL RGTLNESALRRAFDHLIERHEVLRTVFHTDGDQAQQVLMHDQTVALESVDLTGLADVELRDAELALQVATVTGQPFDLRT GPLLRAHLFRLAGDEHVLIVSMHHIVSDGWSMDVMIQEFVHCYQAYCEGREAALPELPLQYADYAIWQRSWLEAGEGARQ LDYWRNQLGEEQPLLDAAPDFPRPATQSYQGEHLRFDFGVDLSRRLNAFARTQGMTLFMLVLAGFSLFLSRKAGQRDIRI GVPNANRGRAETEGLIGFFINTQVLRCQVDERLSYLDLLAQIRDTSFGAQAHQDVPFEQLVDQLAPERSLGHNPLFQAKF NQNVVLKQKTALRLAGLEVSEYAFDKQGAHFDLALDITDDGTLIHGDMAYASDLYRRTTVEGFIPELLALFETLLDAPQA PLFSLGALAIEPRREAREPAPHMLQLWDRQVERQPHAQAARSLERTLTTLQLEQAANQLAHHLIRMGISEGQPVAVLMER SLDWLTAVLAIFKAGGVYMPLDVKAPDARLQQMLINAQARVLLCAEGDVRQTSLGVAGCQGLTWTPALWQDLPVSRPDTR PSADSAAYVIHTSGSTGQPKGVLVSQGALASYLRGLLEQLHLAPEASMALVSTIAADLGHTVLFGALCSGRTLHVLTEAL GFDPDAFAAYMAEHQVGVLKIVPGHLAALLQAGQPADVLPQHALIVGGEACSPALVEQLRQLKPGCRVINHYGPSETTVG VLTYEVPASSCLDQKLKADSNPCGSELARESDSPAFPSRKNVQTSSRASEASPSSLPQLPCFPQSTAHSGDPLRSVPVGT PLPGASAYVLDDVLNPVGTQVAGELYIGGDSVALGYIGQPALTAERFVPDPFAQDGTRVYRSGDRMRRNHQGLLEFIGRA DDQVKVRGYRVEPAEVARVLLGLASVAQVSVLALPIDDDQARLQLVAYCVAAGGADLSIDSLREQLTACLPDYMVPAQIM LLDSLPLTANGKLDKRALPKPGVVKQRYTAPVGEIEEKLAAVWADVLKLEQVGSTDNFFELGGDSILSLQIIARAKRQGI KLSPKQLFEKQTIGQLASVAKLIQKKPVAVAEQISGSLPLLPIQARFFELDIPERQHWNQALMLKPLQTLEAAHLQSALT ALVEQHDALRLGFTQQNGQWQATFGAPNTCELLWTHELDSIERLPELADEAQRSLDLKNGPLLRAVLIHLPQGEQRLLLV IHHLLVDGVSWRVLLEDLQQAYLALAQGQPVALAAKTTSLQRWAEQLQQYATGQTLKAERDYWLQALQGADQPLPRDKPE GTMRNRDAAHASSWLSRDLTHKLLKVAPAAYRTHVNDLLLTALAQVLCEWSQQPSVLIQLEGHGREDLFDETDLSRTVGW FSSLFPVRLTPQIAPGASLSGIKEQLRAVPDKGIGYGVLRYMGEASFAQQLAALPQARVTFNYLGQFDGSFSEHQGALFV PSADSSGTALCEDGPLGNWLSLNGQVFDGQLQLDWSFSREVYHASTIDTLARRYEQALTTLIEHCTAGHQGVTPSDFPLA RLTQAQLDGLPIAAGQIDDIYPLSPMQQGMLFHSLFDEGAGNYINQLRVNIHGLDVPRFRSAWQAAVDHHDVLRSCFVSQ REQSLQVVQRQVTLPFVELDARGQPESWLDDWAQADRQQGFDLAQGPLLRLAVLRTADDAWHLVYTSHHILMDGWSSSRL LGEVLQRYSGQMPAKQAGRYRDYIQWLQHQDAALSERFWTAQLAELDEPTRLLQAFKSSAQGGGYGDYIQLIDADGTRRL NAFAREQRVTLNTLLQSAWLLLLQRYTGQSSVTFGATVAGRPAELPGVEEQLGLFINTLPVIASPRAEQTVADWVQQVQA KNLALREHEHTPLYDIQRWARNSGEALFDNILVFENYPVSEALQRAPDGLVFSDLRNQEQAHYPLTLVVEATEVLSVRFS YDRQHFSAEGILQLAAHFDHLLQSLCASATTPLGELALPTAWTQSVQRYPSEHCAHQRIEAQAERNPQAIALSFGDEQLS YRQLNQRANQLAHKLREQGVGPDVRVGLAAERGLEMIVGLLAILKAGGAYVPLDPDYPQDRLSFLMHDSGIELLLTQASL LGKLPIPEQVQMLDLADELDDYSTADPINQTAPDNLAYVIYTSGSTGKPKGTLLAHHNLMRLFAATDEWFEFSEKDVWTL FHSFAFDFSVWEIFGALLHGGRLVIVPREVTRSPEDFHALLVEQQVTVLNQTPSAFKQLMHVACDSSLPMSLQTVIFGGE ALDVASLKPWFARFGDQSPQLINMYGITETTVHVSYRPITLADTQNPASPIGEAIPDLSWYVLDADFNPVAQGCSGELHI GHAGLARGYHNRAALTAERFVPDPFSNEGGRLYRTGDLARYRATGVIDYAGRIDHQVKIRGFRIELGEIEARLQAHPAVR EVSVLALDGQLAAYLVPAEPDQDQPTLREMLKNELRAHLPDYMVPTHFIVLDSMPLTANGKLDRKALPAPDASQLQATYS APQGELEQQLAAIWADLLQVERVGRNDNFFELGGHSLLAVQMLVRVREQLQHEVSLKDVFEQPLLADFCATLQEKNGESD HAQDELTKSLEALKRLSAEEIDNLIA
Sequences:
>Translated_2666_residues MTGTTAARIAKRFVGLSLEQRQQFLARLRQEGKDFSLLPVPVSRHDVSAIPLSFAQQRLLFLWQLDPSSDAYKMTTGLRL RGTLNESALRRAFDHLIERHEVLRTVFHTDGDQAQQVLMHDQTVALESVDLTGLADVELRDAELALQVATVTGQPFDLRT GPLLRAHLFRLAGDEHVLIVSMHHIVSDGWSMDVMIQEFVHCYQAYCEGREAALPELPLQYADYAIWQRSWLEAGEGARQ LDYWRNQLGEEQPLLDAAPDFPRPATQSYQGEHLRFDFGVDLSRRLNAFARTQGMTLFMLVLAGFSLFLSRKAGQRDIRI GVPNANRGRAETEGLIGFFINTQVLRCQVDERLSYLDLLAQIRDTSFGAQAHQDVPFEQLVDQLAPERSLGHNPLFQAKF NQNVVLKQKTALRLAGLEVSEYAFDKQGAHFDLALDITDDGTLIHGDMAYASDLYRRTTVEGFIPELLALFETLLDAPQA PLFSLGALAIEPRREAREPAPHMLQLWDRQVERQPHAQAARSLERTLTTLQLEQAANQLAHHLIRMGISEGQPVAVLMER SLDWLTAVLAIFKAGGVYMPLDVKAPDARLQQMLINAQARVLLCAEGDVRQTSLGVAGCQGLTWTPALWQDLPVSRPDTR PSADSAAYVIHTSGSTGQPKGVLVSQGALASYLRGLLEQLHLAPEASMALVSTIAADLGHTVLFGALCSGRTLHVLTEAL GFDPDAFAAYMAEHQVGVLKIVPGHLAALLQAGQPADVLPQHALIVGGEACSPALVEQLRQLKPGCRVINHYGPSETTVG VLTYEVPASSCLDQKLKADSNPCGSELARESDSPAFPSRKNVQTSSRASEASPSSLPQLPCFPQSTAHSGDPLRSVPVGT PLPGASAYVLDDVLNPVGTQVAGELYIGGDSVALGYIGQPALTAERFVPDPFAQDGTRVYRSGDRMRRNHQGLLEFIGRA DDQVKVRGYRVEPAEVARVLLGLASVAQVSVLALPIDDDQARLQLVAYCVAAGGADLSIDSLREQLTACLPDYMVPAQIM LLDSLPLTANGKLDKRALPKPGVVKQRYTAPVGEIEEKLAAVWADVLKLEQVGSTDNFFELGGDSILSLQIIARAKRQGI KLSPKQLFEKQTIGQLASVAKLIQKKPVAVAEQISGSLPLLPIQARFFELDIPERQHWNQALMLKPLQTLEAAHLQSALT ALVEQHDALRLGFTQQNGQWQATFGAPNTCELLWTHELDSIERLPELADEAQRSLDLKNGPLLRAVLIHLPQGEQRLLLV IHHLLVDGVSWRVLLEDLQQAYLALAQGQPVALAAKTTSLQRWAEQLQQYATGQTLKAERDYWLQALQGADQPLPRDKPE GTMRNRDAAHASSWLSRDLTHKLLKVAPAAYRTHVNDLLLTALAQVLCEWSQQPSVLIQLEGHGREDLFDETDLSRTVGW FSSLFPVRLTPQIAPGASLSGIKEQLRAVPDKGIGYGVLRYMGEASFAQQLAALPQARVTFNYLGQFDGSFSEHQGALFV PSADSSGTALCEDGPLGNWLSLNGQVFDGQLQLDWSFSREVYHASTIDTLARRYEQALTTLIEHCTAGHQGVTPSDFPLA RLTQAQLDGLPIAAGQIDDIYPLSPMQQGMLFHSLFDEGAGNYINQLRVNIHGLDVPRFRSAWQAAVDHHDVLRSCFVSQ REQSLQVVQRQVTLPFVELDARGQPESWLDDWAQADRQQGFDLAQGPLLRLAVLRTADDAWHLVYTSHHILMDGWSSSRL LGEVLQRYSGQMPAKQAGRYRDYIQWLQHQDAALSERFWTAQLAELDEPTRLLQAFKSSAQGGGYGDYIQLIDADGTRRL NAFAREQRVTLNTLLQSAWLLLLQRYTGQSSVTFGATVAGRPAELPGVEEQLGLFINTLPVIASPRAEQTVADWVQQVQA KNLALREHEHTPLYDIQRWARNSGEALFDNILVFENYPVSEALQRAPDGLVFSDLRNQEQAHYPLTLVVEATEVLSVRFS YDRQHFSAEGILQLAAHFDHLLQSLCASATTPLGELALPTAWTQSVQRYPSEHCAHQRIEAQAERNPQAIALSFGDEQLS YRQLNQRANQLAHKLREQGVGPDVRVGLAAERGLEMIVGLLAILKAGGAYVPLDPDYPQDRLSFLMHDSGIELLLTQASL LGKLPIPEQVQMLDLADELDDYSTADPINQTAPDNLAYVIYTSGSTGKPKGTLLAHHNLMRLFAATDEWFEFSEKDVWTL FHSFAFDFSVWEIFGALLHGGRLVIVPREVTRSPEDFHALLVEQQVTVLNQTPSAFKQLMHVACDSSLPMSLQTVIFGGE ALDVASLKPWFARFGDQSPQLINMYGITETTVHVSYRPITLADTQNPASPIGEAIPDLSWYVLDADFNPVAQGCSGELHI GHAGLARGYHNRAALTAERFVPDPFSNEGGRLYRTGDLARYRATGVIDYAGRIDHQVKIRGFRIELGEIEARLQAHPAVR EVSVLALDGQLAAYLVPAEPDQDQPTLREMLKNELRAHLPDYMVPTHFIVLDSMPLTANGKLDRKALPAPDASQLQATYS APQGELEQQLAAIWADLLQVERVGRNDNFFELGGHSLLAVQMLVRVREQLQHEVSLKDVFEQPLLADFCATLQEKNGESD HAQDELTKSLEALKRLSAEEIDNLIA >Mature_2665_residues TGTTAARIAKRFVGLSLEQRQQFLARLRQEGKDFSLLPVPVSRHDVSAIPLSFAQQRLLFLWQLDPSSDAYKMTTGLRLR GTLNESALRRAFDHLIERHEVLRTVFHTDGDQAQQVLMHDQTVALESVDLTGLADVELRDAELALQVATVTGQPFDLRTG PLLRAHLFRLAGDEHVLIVSMHHIVSDGWSMDVMIQEFVHCYQAYCEGREAALPELPLQYADYAIWQRSWLEAGEGARQL DYWRNQLGEEQPLLDAAPDFPRPATQSYQGEHLRFDFGVDLSRRLNAFARTQGMTLFMLVLAGFSLFLSRKAGQRDIRIG VPNANRGRAETEGLIGFFINTQVLRCQVDERLSYLDLLAQIRDTSFGAQAHQDVPFEQLVDQLAPERSLGHNPLFQAKFN QNVVLKQKTALRLAGLEVSEYAFDKQGAHFDLALDITDDGTLIHGDMAYASDLYRRTTVEGFIPELLALFETLLDAPQAP LFSLGALAIEPRREAREPAPHMLQLWDRQVERQPHAQAARSLERTLTTLQLEQAANQLAHHLIRMGISEGQPVAVLMERS LDWLTAVLAIFKAGGVYMPLDVKAPDARLQQMLINAQARVLLCAEGDVRQTSLGVAGCQGLTWTPALWQDLPVSRPDTRP SADSAAYVIHTSGSTGQPKGVLVSQGALASYLRGLLEQLHLAPEASMALVSTIAADLGHTVLFGALCSGRTLHVLTEALG FDPDAFAAYMAEHQVGVLKIVPGHLAALLQAGQPADVLPQHALIVGGEACSPALVEQLRQLKPGCRVINHYGPSETTVGV LTYEVPASSCLDQKLKADSNPCGSELARESDSPAFPSRKNVQTSSRASEASPSSLPQLPCFPQSTAHSGDPLRSVPVGTP LPGASAYVLDDVLNPVGTQVAGELYIGGDSVALGYIGQPALTAERFVPDPFAQDGTRVYRSGDRMRRNHQGLLEFIGRAD DQVKVRGYRVEPAEVARVLLGLASVAQVSVLALPIDDDQARLQLVAYCVAAGGADLSIDSLREQLTACLPDYMVPAQIML LDSLPLTANGKLDKRALPKPGVVKQRYTAPVGEIEEKLAAVWADVLKLEQVGSTDNFFELGGDSILSLQIIARAKRQGIK LSPKQLFEKQTIGQLASVAKLIQKKPVAVAEQISGSLPLLPIQARFFELDIPERQHWNQALMLKPLQTLEAAHLQSALTA LVEQHDALRLGFTQQNGQWQATFGAPNTCELLWTHELDSIERLPELADEAQRSLDLKNGPLLRAVLIHLPQGEQRLLLVI HHLLVDGVSWRVLLEDLQQAYLALAQGQPVALAAKTTSLQRWAEQLQQYATGQTLKAERDYWLQALQGADQPLPRDKPEG TMRNRDAAHASSWLSRDLTHKLLKVAPAAYRTHVNDLLLTALAQVLCEWSQQPSVLIQLEGHGREDLFDETDLSRTVGWF SSLFPVRLTPQIAPGASLSGIKEQLRAVPDKGIGYGVLRYMGEASFAQQLAALPQARVTFNYLGQFDGSFSEHQGALFVP SADSSGTALCEDGPLGNWLSLNGQVFDGQLQLDWSFSREVYHASTIDTLARRYEQALTTLIEHCTAGHQGVTPSDFPLAR LTQAQLDGLPIAAGQIDDIYPLSPMQQGMLFHSLFDEGAGNYINQLRVNIHGLDVPRFRSAWQAAVDHHDVLRSCFVSQR EQSLQVVQRQVTLPFVELDARGQPESWLDDWAQADRQQGFDLAQGPLLRLAVLRTADDAWHLVYTSHHILMDGWSSSRLL GEVLQRYSGQMPAKQAGRYRDYIQWLQHQDAALSERFWTAQLAELDEPTRLLQAFKSSAQGGGYGDYIQLIDADGTRRLN AFAREQRVTLNTLLQSAWLLLLQRYTGQSSVTFGATVAGRPAELPGVEEQLGLFINTLPVIASPRAEQTVADWVQQVQAK NLALREHEHTPLYDIQRWARNSGEALFDNILVFENYPVSEALQRAPDGLVFSDLRNQEQAHYPLTLVVEATEVLSVRFSY DRQHFSAEGILQLAAHFDHLLQSLCASATTPLGELALPTAWTQSVQRYPSEHCAHQRIEAQAERNPQAIALSFGDEQLSY RQLNQRANQLAHKLREQGVGPDVRVGLAAERGLEMIVGLLAILKAGGAYVPLDPDYPQDRLSFLMHDSGIELLLTQASLL GKLPIPEQVQMLDLADELDDYSTADPINQTAPDNLAYVIYTSGSTGKPKGTLLAHHNLMRLFAATDEWFEFSEKDVWTLF HSFAFDFSVWEIFGALLHGGRLVIVPREVTRSPEDFHALLVEQQVTVLNQTPSAFKQLMHVACDSSLPMSLQTVIFGGEA LDVASLKPWFARFGDQSPQLINMYGITETTVHVSYRPITLADTQNPASPIGEAIPDLSWYVLDADFNPVAQGCSGELHIG HAGLARGYHNRAALTAERFVPDPFSNEGGRLYRTGDLARYRATGVIDYAGRIDHQVKIRGFRIELGEIEARLQAHPAVRE VSVLALDGQLAAYLVPAEPDQDQPTLREMLKNELRAHLPDYMVPTHFIVLDSMPLTANGKLDRKALPAPDASQLQATYSA PQGELEQQLAAIWADLLQVERVGRNDNFFELGGHSLLAVQMLVRVREQLQHEVSLKDVFEQPLLADFCATLQEKNGESDH AQDELTKSLEALKRLSAEEIDNLIA
Specific function: Activates the 7th to 12th amino acids (Val, D-Val, Trp, D-Leu, Xaa and D-Leu) in linear gramicidin and catalyzes the formation of the peptide bond between them. This enzyme is also responsible for the epimerization of the 8th (D-Val), the 10th (D- Leu) an
COG id: NA
COG function: NA
Gene ontology:
Cell location: Cytoplasm [C]
Metaboloic importance: Non_Essential [C]
Operon status: Not Known
Operon components: None
Similarity: Contains 6 acyl carrier domains [H]
Homologues:
Organism=Homo sapiens, GI45580730, Length=587, Percent_Identity=24.7018739352641, Blast_Score=135, Evalue=5e-31, Organism=Homo sapiens, GI187761345, Length=555, Percent_Identity=24.6846846846847, Blast_Score=101, Evalue=1e-20, Organism=Homo sapiens, GI187761343, Length=555, Percent_Identity=24.6846846846847, Blast_Score=101, Evalue=1e-20, Organism=Homo sapiens, GI28416953, Length=580, Percent_Identity=23.7931034482759, Blast_Score=96, Evalue=3e-19, Organism=Homo sapiens, GI156151445, Length=578, Percent_Identity=22.4913494809689, Blast_Score=89, Evalue=5e-17, Organism=Homo sapiens, GI38505220, Length=524, Percent_Identity=22.5190839694656, Blast_Score=89, Evalue=6e-17, Organism=Homo sapiens, GI122937307, Length=412, Percent_Identity=23.0582524271845, Blast_Score=75, Evalue=1e-12, Organism=Homo sapiens, GI42544132, Length=506, Percent_Identity=21.7391304347826, Blast_Score=74, Evalue=1e-12, Organism=Homo sapiens, GI13375727, Length=407, Percent_Identity=21.8673218673219, Blast_Score=73, Evalue=3e-12, Organism=Escherichia coli, GI1786801, Length=1043, Percent_Identity=29.8178331735379, Blast_Score=323, Evalue=1e-88, Organism=Escherichia coli, GI1786810, Length=517, Percent_Identity=26.3056092843327, Blast_Score=109, Evalue=2e-24, Organism=Escherichia coli, GI145693145, Length=502, Percent_Identity=24.3027888446215, Blast_Score=105, Evalue=5e-23, Organism=Escherichia coli, GI1790505, Length=562, Percent_Identity=24.3772241992883, Blast_Score=97, Evalue=1e-20, Organism=Escherichia coli, GI1788107, Length=523, Percent_Identity=25.6214149139579, Blast_Score=96, Evalue=2e-20, Organism=Caenorhabditis elegans, GI17550940, Length=980, Percent_Identity=23.6734693877551, Blast_Score=175, Evalue=3e-43, Organism=Caenorhabditis elegans, GI17556356, Length=572, Percent_Identity=26.2237762237762, Blast_Score=143, Evalue=1e-33, Organism=Caenorhabditis elegans, GI17558820, Length=523, Percent_Identity=24.282982791587, Blast_Score=96, Evalue=2e-19, Organism=Caenorhabditis elegans, GI71983001, Length=388, Percent_Identity=26.8041237113402, Blast_Score=77, Evalue=1e-13, Organism=Caenorhabditis elegans, GI71982997, Length=388, Percent_Identity=26.8041237113402, Blast_Score=77, Evalue=1e-13, Organism=Caenorhabditis elegans, GI17560308, Length=612, Percent_Identity=22.0588235294118, Blast_Score=77, Evalue=1e-13, Organism=Saccharomyces cerevisiae, GI6319591, Length=834, Percent_Identity=25.6594724220624, Blast_Score=230, Evalue=2e-60, Organism=Saccharomyces cerevisiae, GI6319264, Length=576, Percent_Identity=23.0902777777778, Blast_Score=87, Evalue=3e-17, Organism=Saccharomyces cerevisiae, GI6319699, Length=530, Percent_Identity=21.6981132075472, Blast_Score=83, Evalue=7e-16, Organism=Drosophila melanogaster, GI24648676, Length=617, Percent_Identity=30.1458670988655, Blast_Score=221, Evalue=7e-57, Organism=Drosophila melanogaster, GI24581924, Length=545, Percent_Identity=23.6697247706422, Blast_Score=114, Evalue=9e-25, Organism=Drosophila melanogaster, GI62472339, Length=539, Percent_Identity=23.747680890538, Blast_Score=91, Evalue=9e-18, Organism=Drosophila melanogaster, GI24667955, Length=539, Percent_Identity=23.747680890538, Blast_Score=90, Evalue=2e-17, Organism=Drosophila melanogaster, GI24582852, Length=492, Percent_Identity=23.1707317073171, Blast_Score=90, Evalue=2e-17, Organism=Drosophila melanogaster, GI18859661, Length=539, Percent_Identity=22.8200371057514, Blast_Score=85, Evalue=6e-16, Organism=Drosophila melanogaster, GI24667959, Length=395, Percent_Identity=25.8227848101266, Blast_Score=81, Evalue=9e-15,
Paralogues:
None
Copy number: NA
Swissprot (AC and ID): NA
Other databases:
- InterPro: IPR010071 - InterPro: IPR009081 - InterPro: IPR020845 - InterPro: IPR000873 - InterPro: IPR023213 - InterPro: IPR001242 - InterPro: IPR010060 - InterPro: IPR006163 - InterPro: IPR020806 - InterPro: IPR006162 [H]
Pfam domain/function: PF00501 AMP-binding; PF00668 Condensation; PF00550 PP-binding [H]
EC number: 2.7.7.- [C]
Molecular weight: Translated: 294617; Mature: 294486
Theoretical pI: Translated: 5.27; Mature: 5.27
Prosite motif: PS00012 PHOSPHOPANTETHEINE ; PS50075 ACP_DOMAIN ; PS00455 AMP_BINDING
Important sites: NA
Signals:
None
Transmembrane regions:
None
Cys/Met content:
0.9 %Cys (Translated Protein) 1.4 %Met (Translated Protein) 2.3 %Cys+Met (Translated Protein) 0.9 %Cys (Mature Protein) 1.4 %Met (Mature Protein) 2.2 %Cys+Met (Mature Protein)
Secondary structure:
>Translated Secondary Structure MTGTTAARIAKRFVGLSLEQRQQFLARLRQEGKDFSLLPVPVSRHDVSAIPLSFAQQRLL CCCCHHHHHHHHHHCCCHHHHHHHHHHHHHCCCCCEEEECCCCCCCCCCCCHHHHHCCEE FLWQLDPSSDAYKMTTGLRLRGTLNESALRRAFDHLIERHEVLRTVFHTDGDQAQQVLMH EEEEECCCCCCEEEECCEEEEECCCHHHHHHHHHHHHHHHHHHHHHHCCCCHHHHHHHHH DQTVALESVDLTGLADVELRDAELALQVATVTGQPFDLRTGPLLRAHLFRLAGDEHVLIV CCHHEEECCCCCCCCCCEEECCCEEEEEEEECCCCCCCCCCHHHHHHHHHHCCCCEEEEE SMHHIVSDGWSMDVMIQEFVHCYQAYCEGREAALPELPLQYADYAIWQRSWLEAGEGARQ EEHHHHCCCCCHHHHHHHHHHHHHHHHCCCCCCCCCCCHHHHHHHHHHHHHHHHCCCHHH LDYWRNQLGEEQPLLDAAPDFPRPATQSYQGEHLRFDFGVDLSRRLNAFARTQGMTLFML HHHHHHHCCCCCCCCCCCCCCCCCCCCCCCCCEEEEECCCCHHHHHHHHHHHCCHHHHHH VLAGFSLFLSRKAGQRDIRIGVPNANRGRAETEGLIGFFINTQVLRCQVDERLSYLDLLA HHHHHHHHHHHCCCCCCEEEECCCCCCCCCHHCCEEEEEECCEEEEEEHHHHHHHHHHHH QIRDTSFGAQAHQDVPFEQLVDQLAPERSLGHNPLFQAKFNQNVVLKQKTALRLAGLEVS HHHCCCCCCCCCCCCCHHHHHHHHCCCCCCCCCCCEEEECCCCEEEEHHHHHHHCCCCHH EYAFDKQGAHFDLALDITDDGTLIHGDMAYASDLYRRTTVEGFIPELLALFETLLDAPQA HHHHCCCCCEEEEEEEECCCCCEEECCHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCC PLFSLGALAIEPRREAREPAPHMLQLWDRQVERQPHAQAARSLERTLTTLQLEQAANQLA CHHHHCCEEECCCHHHCCCCHHHHHHHHHHHHCCHHHHHHHHHHHHHHHHHHHHHHHHHH HHLIRMGISEGQPVAVLMERSLDWLTAVLAIFKAGGVYMPLDVKAPDARLQQMLINAQAR HHHHHHCCCCCCCCHHHHHHHHHHHHHHHHHHHCCCEEEEEECCCCHHHHHHHHHCCCCE VLLCAEGDVRQTSLGVAGCQGLTWTPALWQDLPVSRPDTRPSADSAAYVIHTSGSTGQPK EEEECCCCCCHHHCCHHCCCCCCCCHHHHHCCCCCCCCCCCCCCCCEEEEECCCCCCCCC GVLVSQGALASYLRGLLEQLHLAPEASMALVSTIAADLGHTVLFGALCSGRTLHVLTEAL CEEEECHHHHHHHHHHHHHHHCCCCHHHHHHHHHHHHHHHHHHHHHHHCCCHHHHHHHHH GFDPDAFAAYMAEHQVGVLKIVPGHLAALLQAGQPADVLPQHALIVGGEACSPALVEQLR CCCHHHHHHHHHHCCCCEEEECHHHHHHHHHCCCCCCCCCCCEEEECCCCCCHHHHHHHH QLKPGCRVINHYGPSETTVGVLTYEVPASSCLDQKLKADSNPCGSELARESDSPAFPSRK HCCCCCEEHHCCCCCCCEEEEEEEECCHHHHHHHHHHCCCCCCHHHHHHCCCCCCCCCCC NVQTSSRASEASPSSLPQLPCFPQSTAHSGDPLRSVPVGTPLPGASAYVLDDVLNPVGTQ CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHH VAGELYIGGDSVALGYIGQPALTAERFVPDPFAQDGTRVYRSGDRMRRNHQGLLEFIGRA HCCEEEECCCCEEEEECCCCCCCHHHCCCCCCCCCCHHHHHCCHHHHHHHHHHHHHHCCC DDQVKVRGYRVEPAEVARVLLGLASVAQVSVLALPIDDDQARLQLVAYCVAAGGADLSID CCCEEEEEEECCHHHHHHHHHHHHHHHHEEEEEEECCCCHHHHHHHHHHHHCCCCCCCHH SLREQLTACLPDYMVPAQIMLLDSLPLTANGKLDKRALPKPGVVKQRYTAPVGEIEEKLA HHHHHHHHHCCCCCCCHHHEEEECCCCCCCCCCCCCCCCCCCCCCHHHCCCHHHHHHHHH AVWADVLKLEQVGSTDNFFELGGDSILSLQIIARAKRQGIKLSPKQLFEKQTIGQLASVA HHHHHHHHHHHCCCCCCHHCCCCCCEEHHHHHHHHHHCCCCCCHHHHHHHHHHHHHHHHH KLIQKKPVAVAEQISGSLPLLPIQARFFELDIPERQHWNQALMLKPLQTLEAAHLQSALT HHHHHCCHHHHHHHCCCCCEEEEEEEEEEECCCCHHHCCHHHHHHHHHHHHHHHHHHHHH ALVEQHDALRLGFTQQNGQWQATFGAPNTCELLWTHELDSIERLPELADEAQRSLDLKNG HHHHHCCCEEEEEEECCCEEEEECCCCCCEEEEEECCHHHHHHHHHHHHHHHHHCCCCCC PLLRAVLIHLPQGEQRLLLVIHHLLVDGVSWRVLLEDLQQAYLALAQGQPVALAAKTTSL CHHHHHHHHCCCCCHHHHHHHHHHHHCCCHHHHHHHHHHHHHHHHHCCCCEEEEEHHHHH QRWAEQLQQYATGQTLKAERDYWLQALQGADQPLPRDKPEGTMRNRDAAHASSWLSRDLT HHHHHHHHHHHCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHH HKLLKVAPAAYRTHVNDLLLTALAQVLCEWSQQPSVLIQLEGHGREDLFDETDLSRTVGW HHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCEEEEECCCCCCCCCCHHHHHHHHHH FSSLFPVRLTPQIAPGASLSGIKEQLRAVPDKGIGYGVLRYMGEASFAQQLAALPQARVT HHHCCCEEECCCCCCCCCHHHHHHHHHHCCCCCCCHHHHHHHCCHHHHHHHHHCCCHHHH FNYLGQFDGSFSEHQGALFVPSADSSGTALCEDGPLGNWLSLNGQVFDGQLQLDWSFSRE HHHHHCCCCCCCCCCCEEEEECCCCCCCEEECCCCCCCEEECCCEEEECEEEEEECCCCH VYHASTIDTLARRYEQALTTLIEHCTAGHQGVTPSDFPLARLTQAQLDGLPIAAGQIDDI HHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCCCCCCCHHHHHHHHHCCCCEECCCCCCC YPLSPMQQGMLFHSLFDEGAGNYINQLRVNIHGLDVPRFRSAWQAAVDHHDVLRSCFVSQ CCCCHHHHHHHHHHHHHHCCCHHHHEEEEEEECCCCHHHHHHHHHHHHHHHHHHHHHHHH REQSLQVVQRQVTLPFVELDARGQPESWLDDWAQADRQQGFDLAQGPLLRLAVLRTADDA HHHHHHHHHHHHCCCEEEECCCCCCHHHHHHHHHHHHHCCCCCCCCCHHHHHHHHCCCCC WHLVYTSHHILMDGWSSSRLLGEVLQRYSGQMPAKQAGRYRDYIQWLQHQDAALSERFWT EEEEEECCEEEEECCCCHHHHHHHHHHHCCCCCHHHHHHHHHHHHHHHHCCHHHHHHHHH AQLAELDEPTRLLQAFKSSAQGGGYGDYIQLIDADGTRRLNAFAREQRVTLNTLLQSAWL HHHHHCCCHHHHHHHHHHCCCCCCCCCEEEEECCCCCHHHHHHHHHHHHHHHHHHHHHHH LLLQRYTGQSSVTFGATVAGRPAELPGVEEQLGLFINTLPVIASPRAEQTVADWVQQVQA HHHHHHCCCCCEEECEEECCCCCCCCCCHHHHHHHHHHHHHHCCCCHHHHHHHHHHHHHH KNLALREHEHTPLYDIQRWARNSGEALFDNILVFENYPVSEALQRAPDGLVFSDLRNQEQ HCCHHHCCCCCCHHHHHHHHCCCCHHHHHCEEEECCCCHHHHHHHCCCCCCHHHHCCCCC AHYPLTLVVEATEVLSVRFSYDRQHFSAEGILQLAAHFDHLLQSLCASATTPLGELALPT CCCCEEEEEEHHHHHEEEEHHCHHHCCHHHHHHHHHHHHHHHHHHHHHCCCCCHHHCCCH AWTQSVQRYPSEHCAHQRIEAQAERNPQAIALSFGDEQLSYRQLNQRANQLAHKLREQGV HHHHHHHHCCHHHHHHHHHHHHHCCCCCEEEEECCCHHHHHHHHHHHHHHHHHHHHHCCC GPDVRVGLAAERGLEMIVGLLAILKAGGAYVPLDPDYPQDRLSFLMHDSGIELLLTQASL CCCEEEEHHHHHHHHHHHHHHHHHHCCCCEECCCCCCCHHHHHHHHCCCCHHEEEHHHHH LGKLPIPEQVQMLDLADELDDYSTADPINQTAPDNLAYVIYTSGSTGKPKGTLLAHHNLM HCCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCEEEEEEECCCCCCCCCEEEHHHHHH RLFAATDEWFEFSEKDVWTLFHSFAFDFSVWEIFGALLHGGRLVIVPREVTRSPEDFHAL HHHHHCHHHHHCCCCHHHHHHHHHHHHHHHHHHHHHHHCCCEEEEECHHHHCCCHHHHHH LVEQQVTVLNQTPSAFKQLMHVACDSSLPMSLQTVIFGGEALDVASLKPWFARFGDQSPQ HHHHHHHHHCCCHHHHHHHHHHHCCCCCCCEEEEEEECCCEECHHHCCHHHHHCCCCCCC LINMYGITETTVHVSYRPITLADTQNPASPIGEAIPDLSWYVLDADFNPVAQGCSGELHI EEEEECCEEEEEEEEEEEEEEECCCCCCHHHHHHCCCCEEEEEECCCCHHHCCCCCCEEE GHAGLARGYHNRAALTAERFVPDPFSNEGGRLYRTGDLARYRATGVIDYAGRIDHQVKIR CCHHHHCCCCCHHHHHHHHCCCCCCCCCCCEEEECCCCHHHHHCCEEECCCCCCCEEEEE GFRIELGEIEARLQAHPAVREVSVLALDGQLAAYLVPAEPDQDQPTLREMLKNELRAHLP EEEEEHHHHHHHHHCCCCHHHEEEEEECCCEEEEEECCCCCCCCHHHHHHHHHHHHHHCC DYMVPTHFIVLDSMPLTANGKLDRKALPAPDASQLQATYSAPQGELEQQLAAIWADLLQV CCCCCCEEEEEECCCCCCCCCCCCCCCCCCCHHHHHHHHCCCCHHHHHHHHHHHHHHHHH ERVGRNDNFFELGGHSLLAVQMLVRVREQLQHEVSLKDVFEQPLLADFCATLQEKNGESD HHCCCCCCEEEECCCHHHHHHHHHHHHHHHHHHCCHHHHHHCHHHHHHHHHHHHCCCCCC HAQDELTKSLEALKRLSAEEIDNLIA HHHHHHHHHHHHHHHHCHHHHHHHCC >Mature Secondary Structure TGTTAARIAKRFVGLSLEQRQQFLARLRQEGKDFSLLPVPVSRHDVSAIPLSFAQQRLL CCCHHHHHHHHHHCCCHHHHHHHHHHHHHCCCCCEEEECCCCCCCCCCCCHHHHHCCEE FLWQLDPSSDAYKMTTGLRLRGTLNESALRRAFDHLIERHEVLRTVFHTDGDQAQQVLMH EEEEECCCCCCEEEECCEEEEECCCHHHHHHHHHHHHHHHHHHHHHHCCCCHHHHHHHHH DQTVALESVDLTGLADVELRDAELALQVATVTGQPFDLRTGPLLRAHLFRLAGDEHVLIV CCHHEEECCCCCCCCCCEEECCCEEEEEEEECCCCCCCCCCHHHHHHHHHHCCCCEEEEE SMHHIVSDGWSMDVMIQEFVHCYQAYCEGREAALPELPLQYADYAIWQRSWLEAGEGARQ EEHHHHCCCCCHHHHHHHHHHHHHHHHCCCCCCCCCCCHHHHHHHHHHHHHHHHCCCHHH LDYWRNQLGEEQPLLDAAPDFPRPATQSYQGEHLRFDFGVDLSRRLNAFARTQGMTLFML HHHHHHHCCCCCCCCCCCCCCCCCCCCCCCCCEEEEECCCCHHHHHHHHHHHCCHHHHHH VLAGFSLFLSRKAGQRDIRIGVPNANRGRAETEGLIGFFINTQVLRCQVDERLSYLDLLA HHHHHHHHHHHCCCCCCEEEECCCCCCCCCHHCCEEEEEECCEEEEEEHHHHHHHHHHHH QIRDTSFGAQAHQDVPFEQLVDQLAPERSLGHNPLFQAKFNQNVVLKQKTALRLAGLEVS HHHCCCCCCCCCCCCCHHHHHHHHCCCCCCCCCCCEEEECCCCEEEEHHHHHHHCCCCHH EYAFDKQGAHFDLALDITDDGTLIHGDMAYASDLYRRTTVEGFIPELLALFETLLDAPQA HHHHCCCCCEEEEEEEECCCCCEEECCHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCC PLFSLGALAIEPRREAREPAPHMLQLWDRQVERQPHAQAARSLERTLTTLQLEQAANQLA CHHHHCCEEECCCHHHCCCCHHHHHHHHHHHHCCHHHHHHHHHHHHHHHHHHHHHHHHHH HHLIRMGISEGQPVAVLMERSLDWLTAVLAIFKAGGVYMPLDVKAPDARLQQMLINAQAR HHHHHHCCCCCCCCHHHHHHHHHHHHHHHHHHHCCCEEEEEECCCCHHHHHHHHHCCCCE VLLCAEGDVRQTSLGVAGCQGLTWTPALWQDLPVSRPDTRPSADSAAYVIHTSGSTGQPK EEEECCCCCCHHHCCHHCCCCCCCCHHHHHCCCCCCCCCCCCCCCCEEEEECCCCCCCCC GVLVSQGALASYLRGLLEQLHLAPEASMALVSTIAADLGHTVLFGALCSGRTLHVLTEAL CEEEECHHHHHHHHHHHHHHHCCCCHHHHHHHHHHHHHHHHHHHHHHHCCCHHHHHHHHH GFDPDAFAAYMAEHQVGVLKIVPGHLAALLQAGQPADVLPQHALIVGGEACSPALVEQLR CCCHHHHHHHHHHCCCCEEEECHHHHHHHHHCCCCCCCCCCCEEEECCCCCCHHHHHHHH QLKPGCRVINHYGPSETTVGVLTYEVPASSCLDQKLKADSNPCGSELARESDSPAFPSRK HCCCCCEEHHCCCCCCCEEEEEEEECCHHHHHHHHHHCCCCCCHHHHHHCCCCCCCCCCC NVQTSSRASEASPSSLPQLPCFPQSTAHSGDPLRSVPVGTPLPGASAYVLDDVLNPVGTQ CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHHH VAGELYIGGDSVALGYIGQPALTAERFVPDPFAQDGTRVYRSGDRMRRNHQGLLEFIGRA HCCEEEECCCCEEEEECCCCCCCHHHCCCCCCCCCCHHHHHCCHHHHHHHHHHHHHHCCC DDQVKVRGYRVEPAEVARVLLGLASVAQVSVLALPIDDDQARLQLVAYCVAAGGADLSID CCCEEEEEEECCHHHHHHHHHHHHHHHHEEEEEEECCCCHHHHHHHHHHHHCCCCCCCHH SLREQLTACLPDYMVPAQIMLLDSLPLTANGKLDKRALPKPGVVKQRYTAPVGEIEEKLA HHHHHHHHHCCCCCCCHHHEEEECCCCCCCCCCCCCCCCCCCCCCHHHCCCHHHHHHHHH AVWADVLKLEQVGSTDNFFELGGDSILSLQIIARAKRQGIKLSPKQLFEKQTIGQLASVA HHHHHHHHHHHCCCCCCHHCCCCCCEEHHHHHHHHHHCCCCCCHHHHHHHHHHHHHHHHH KLIQKKPVAVAEQISGSLPLLPIQARFFELDIPERQHWNQALMLKPLQTLEAAHLQSALT HHHHHCCHHHHHHHCCCCCEEEEEEEEEEECCCCHHHCCHHHHHHHHHHHHHHHHHHHHH ALVEQHDALRLGFTQQNGQWQATFGAPNTCELLWTHELDSIERLPELADEAQRSLDLKNG HHHHHCCCEEEEEEECCCEEEEECCCCCCEEEEEECCHHHHHHHHHHHHHHHHHCCCCCC PLLRAVLIHLPQGEQRLLLVIHHLLVDGVSWRVLLEDLQQAYLALAQGQPVALAAKTTSL CHHHHHHHHCCCCCHHHHHHHHHHHHCCCHHHHHHHHHHHHHHHHHCCCCEEEEEHHHHH QRWAEQLQQYATGQTLKAERDYWLQALQGADQPLPRDKPEGTMRNRDAAHASSWLSRDLT HHHHHHHHHHHCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCCCCHHHHHHHHHHHHH HKLLKVAPAAYRTHVNDLLLTALAQVLCEWSQQPSVLIQLEGHGREDLFDETDLSRTVGW HHHHHHHHHHHHHHHHHHHHHHHHHHHHHHCCCCCEEEEECCCCCCCCCCHHHHHHHHHH FSSLFPVRLTPQIAPGASLSGIKEQLRAVPDKGIGYGVLRYMGEASFAQQLAALPQARVT HHHCCCEEECCCCCCCCCHHHHHHHHHHCCCCCCCHHHHHHHCCHHHHHHHHHCCCHHHH FNYLGQFDGSFSEHQGALFVPSADSSGTALCEDGPLGNWLSLNGQVFDGQLQLDWSFSRE HHHHHCCCCCCCCCCCEEEEECCCCCCCEEECCCCCCCEEECCCEEEECEEEEEECCCCH VYHASTIDTLARRYEQALTTLIEHCTAGHQGVTPSDFPLARLTQAQLDGLPIAAGQIDDI HHHHHHHHHHHHHHHHHHHHHHHHHCCCCCCCCCCCCCHHHHHHHHHCCCCEECCCCCCC YPLSPMQQGMLFHSLFDEGAGNYINQLRVNIHGLDVPRFRSAWQAAVDHHDVLRSCFVSQ CCCCHHHHHHHHHHHHHHCCCHHHHEEEEEEECCCCHHHHHHHHHHHHHHHHHHHHHHHH REQSLQVVQRQVTLPFVELDARGQPESWLDDWAQADRQQGFDLAQGPLLRLAVLRTADDA HHHHHHHHHHHHCCCEEEECCCCCCHHHHHHHHHHHHHCCCCCCCCCHHHHHHHHCCCCC WHLVYTSHHILMDGWSSSRLLGEVLQRYSGQMPAKQAGRYRDYIQWLQHQDAALSERFWT EEEEEECCEEEEECCCCHHHHHHHHHHHCCCCCHHHHHHHHHHHHHHHHCCHHHHHHHHH AQLAELDEPTRLLQAFKSSAQGGGYGDYIQLIDADGTRRLNAFAREQRVTLNTLLQSAWL HHHHHCCCHHHHHHHHHHCCCCCCCCCEEEEECCCCCHHHHHHHHHHHHHHHHHHHHHHH LLLQRYTGQSSVTFGATVAGRPAELPGVEEQLGLFINTLPVIASPRAEQTVADWVQQVQA HHHHHHCCCCCEEECEEECCCCCCCCCCHHHHHHHHHHHHHHCCCCHHHHHHHHHHHHHH KNLALREHEHTPLYDIQRWARNSGEALFDNILVFENYPVSEALQRAPDGLVFSDLRNQEQ HCCHHHCCCCCCHHHHHHHHCCCCHHHHHCEEEECCCCHHHHHHHCCCCCCHHHHCCCCC AHYPLTLVVEATEVLSVRFSYDRQHFSAEGILQLAAHFDHLLQSLCASATTPLGELALPT CCCCEEEEEEHHHHHEEEEHHCHHHCCHHHHHHHHHHHHHHHHHHHHHCCCCCHHHCCCH AWTQSVQRYPSEHCAHQRIEAQAERNPQAIALSFGDEQLSYRQLNQRANQLAHKLREQGV HHHHHHHHCCHHHHHHHHHHHHHCCCCCEEEEECCCHHHHHHHHHHHHHHHHHHHHHCCC GPDVRVGLAAERGLEMIVGLLAILKAGGAYVPLDPDYPQDRLSFLMHDSGIELLLTQASL CCCEEEEHHHHHHHHHHHHHHHHHHCCCCEECCCCCCCHHHHHHHHCCCCHHEEEHHHHH LGKLPIPEQVQMLDLADELDDYSTADPINQTAPDNLAYVIYTSGSTGKPKGTLLAHHNLM HCCCCCCHHHHHHHHHHHHCCCCCCCCCCCCCCCCEEEEEEECCCCCCCCCEEEHHHHHH RLFAATDEWFEFSEKDVWTLFHSFAFDFSVWEIFGALLHGGRLVIVPREVTRSPEDFHAL HHHHHCHHHHHCCCCHHHHHHHHHHHHHHHHHHHHHHHCCCEEEEECHHHHCCCHHHHHH LVEQQVTVLNQTPSAFKQLMHVACDSSLPMSLQTVIFGGEALDVASLKPWFARFGDQSPQ HHHHHHHHHCCCHHHHHHHHHHHCCCCCCCEEEEEEECCCEECHHHCCHHHHHCCCCCCC LINMYGITETTVHVSYRPITLADTQNPASPIGEAIPDLSWYVLDADFNPVAQGCSGELHI EEEEECCEEEEEEEEEEEEEEECCCCCCHHHHHHCCCCEEEEEECCCCHHHCCCCCCEEE GHAGLARGYHNRAALTAERFVPDPFSNEGGRLYRTGDLARYRATGVIDYAGRIDHQVKIR CCHHHHCCCCCHHHHHHHHCCCCCCCCCCCEEEECCCCHHHHHCCEEECCCCCCCEEEEE GFRIELGEIEARLQAHPAVREVSVLALDGQLAAYLVPAEPDQDQPTLREMLKNELRAHLP EEEEEHHHHHHHHHCCCCHHHEEEEEECCCEEEEEECCCCCCCCHHHHHHHHHHHHHHCC DYMVPTHFIVLDSMPLTANGKLDRKALPAPDASQLQATYSAPQGELEQQLAAIWADLLQV CCCCCCEEEEEECCCCCCCCCCCCCCCCCCCHHHHHHHHCCCCHHHHHHHHHHHHHHHHH ERVGRNDNFFELGGHSLLAVQMLVRVREQLQHEVSLKDVFEQPLLADFCATLQEKNGESD HHCCCCCCEEEECCCHHHHHHHHHHHHHHHHHHCCHHHHHHCHHHHHHHHHHHHCCCCCC HAQDELTKSLEALKRLSAEEIDNLIA HHHHHHHHHHHHHHHHCHHHHHHHCC
PDB accession: NA
Resolution: NA
Structure class: Unstructured
Cofactors: Phosphopantetheine. [C]
Metal ions: NA
Kcat value (1/min): NA
Specific activity: NA
Km value (mM): NA
Substrates: 6 ATP; L-serine; 2,3-dihydroxybenzoate [C]
Specific reaction: 6 ATP + 3 L-serine + 3 2,3-dihydroxybenzoate = 6 pyrophosphate + 6 AMP + enterobactin ATP + L-serine = pyrophosphate + L-Seryl-AMP 6 ATP + 3 L-serine + 3 2,3-dihydroxybenzoate = 6 pyrophosphate + 6 AMP + enterobactin ATP + L-serine = pyrophosphate + L-Ser
General reaction: Transferases; Acyltransferases; Transferring groups other than amino-acyl groups [C]
Inhibitor: NA
Structure determination priority: 9.0
TargetDB status: NA
Availability: NA
References: NA