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SCN18_13_7_16_R1_B_scaffold_123_3

Organism: SCN18_13_7_16_R1_B_Nakamurella_69_21

near complete RP 44 / 55 BSCG 50 / 51 ASCG 13 / 38
Location: comp(1498..4830)

Top 3 Functional Annotations

Value Algorithm Source
Glutamate-ammonia-ligase adenylyltransferase {ECO:0000256|HAMAP-Rule:MF_00802, ECO:0000256|SAAS:SAAS00015000}; EC=2.7.7.42 {ECO:0000256|HAMAP-Rule:MF_00802, ECO:0000256|SAAS:SAAS00015004};; Glutamine-synthase adenylyltransferase {ECO:0000256|HAMAP-Rule:MF_00802}; [Glutamate--ammonia-ligase] adenylyltransferase {ECO:0000256|HAMAP-Rule:MF_00802}; TaxID=591158 species="Bacteria; Actinobacteria; Streptomycetales; Streptomycetaceae; Streptomyces.;" source="Streptomyces sp. AA4.;" similarity UNIPROT
DB: UniProtKB
  • Identity: 58.4
  • Coverage: 781.0
  • Bit_score: 835
  • Evalue 8.00e-239
Glutamate-ammonia-ligase adenylyltransferase (EC:2.7.7.42) similarity KEGG
DB: KEGG
  • Identity: 57.7
  • Coverage: 785.0
  • Bit_score: 830
  • Evalue 5.20e-238
hypothetical protein n=1 Tax=Actinopolymorpha alba RepID=UPI000374FC6E similarity UNIREF
DB: UNIREF100
  • Identity: 51.5
  • Coverage: 1046.0
  • Bit_score: 897
  • Evalue 1.20e-257

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Taxonomy

SCNPILOT_CONT_1000_BF_Actinobacteria_69_20 → SCNPILOT_CONT_1000_BF_Actinobacteria_69_20 → SCNPILOT_CONT_1000_BF_Actinobacteria_69_20 → Actinobacteria → Actinobacteria → Bacteria

Sequences

DNA sequence
Length: 3333
ATGGCGCGCGGCGCCCGTACGCTGGCTCGCTTCGGCCTGCTGGATACCGACGCGGTACGTGCAGGGCTCCGCGTGCTGGGGTTGGTCGCGGATGGGCCGACCTCGGACGCGTTGATCGCGGCGGCTGCCGCCGATTCCGACCCGCAGGCGGTACTCTTCGCCCTCGGCCGCGCGGGCCGCCCACAGCTCGCGGTACGCCGGCTCGCGGATATGGTCACCGCGCTGCGTACGGGAGATGGCGTGGATAGTGCGCCAGCCGAAGCGTCGACCGATGCCCCGGCCGACCTGGGAACCACCGCGCTAGCCGACCCGGCAGCCGACTTCCTGGATACCCTGCGCACCGATGCCGCTTTCCGCGCCCGGCTCGTCGGCCTGGTCGGCGCGAGCGAACCGCTCGGCGAACACCTCGTCGCGCATCCACGCGAATGGCAGGCGATCGCCGCGGACGAGCCGTTCGCGGACGCGACGTCATACGCGCGATGCCTGGGCGCGCTCGACGCCGCAACGCGGGGGCGGGCCGGCGCCCGGCTGTCGGCCCGGCAGGTGGTCGCCCCCCTGCGCATCGCGTATCGGACCAGACTCGCGGTGATCGCGGCCGCCGATGTGGCTCCGGCAATCGAACTCGGCCGGCCAGGCCCCACGGTCGCCGAGGTCGGGCAGGCTCTGTCCGCCTTGGCCGATGCGCTGCTCGAGACCGCGCTCGCCGTCGCCCGGGACGCGCATCCGAGCCGCGCGCCGGTGCGGTTCGCCGTCGTCGCCATGGGTAAGTGCGGTGCGCGCGAGCTGAACTACGTCTCTGACGTGGACGTCTTGTTCGTCGCGTCCGCGCGGCCTGCCAACGGCAACACCATAGACGGCACCGACAGCAACGCCGACAACGTGGCCAATGCCGACAACGCGACCAACGCCGGCGACACGAACAACACCGGCGGCAGCCCCGCGCCTGTGGGCCCCAGCCCCGACACCGACCCGTCCGACGAGTCGACGGCGCTACGGACGGCGACCCGGTGGGCGACCGAACTGATGAGCATCTGCCGCCAGGTCGCCTGGGACGTCGACGCCGCGCTGCGGCCCGAAGGCGGCGCCGGGCCGCTGGTCCGAACCATCGCCGGCTACCGCGGCTACTACCAGCGCTGGGCGAAGACCTGGGAGTTCCAGGCGCTGCTCAAGGCGCGGCCCGCCGCCGGCGACAAGGACCTGGGCGACGAGTTTCTGGCCGTGGCACAGCCGGAGGTGTGGGCCGCTGCCGGGCGGGCCGATTTCGTCGCGGACGTACAGGCGATGCGCCGCCGCGTCCGTGACGCCGTGCCGATGCCCGAGCGCGATCGAGAACTGAAGCTTGGTGCCGGCGGCCTGCGAGACGTCGAGTTCGCCGTGCAACTGCTGCAGATGGTGCACGGCCGAACGGACGAGACCCTTCGCCGCCCGGACACCCTGACGGCGCTGGAAACGCTCACGGCGGGGGGTTACGTGGGCCGCGTCGACGGTGCCGAACTGGCGCGGGCCTACGAGTTCGAGCGGCGGGTCGAGCACCTCGTGCAGTTGCAACACCTGCTTCGTACGCACAGCCTGCCGGCCGGCCAGGACGATCTGGAGTGGCTTGCCCGAACGGCGGGCTTCGCGATCGGGGGTTCAGGAACAAGCGGGCCGGCGACCGGCGGGCCGGGGGTGGACGGCGCCGCGCGGCACCTCGCCGCGGAACTCGCCCGGCACGGCGCGGTGGTCCGCCGCTTGCACGAGAAGCTTTTCTACCGGCCCCTTCTCGCCGCCGTCGCCGCGGTCCCGGCGGACGGGCTCCGGCTCACCACGGACGAGGCAGCCGCCCGGCTCGGTGCGCTTGGATTCCTCGCGCCCGGGGGCGCCCTGCGGCACATTGCCGCGCTTACCGACGGGGTGTCCCGGCGCGCCGCGATCCAACGCACCCTGCTTCCGGTGCTGCTGGGAATGTTCGCGGACGCTCCCGACCCCGATATGGGCCTGCTCGGCTACCGCACCGTGTCGGACGCCCTCGCCGACACGCCGTGGTACCTGCGGCTGCTCCGCGACGAGGGGCTCGTCGCCGAGCGGTTGGCGGCGCTCCTCGGAACGTCCCGCCTGGTCGCGGACCTGCTGCAGCGCGCGCCCGAGGTGCTCCGCCTGCTGGCGGCGGACGCGGACCTGGCGGGCCCGGAGTCGCAGGCCACCGAGGAGATGGCCGCATCGGCGCTGCTCGCCCGCGCGGCGCGAGCGCGGACCCCGGTCGCGGCCGCGGCGGCGGCCAGATCCGCGCGGCGGCACGAGATGCTGCGGCTGGCTTGTGCCGACCTGCTGGGGCTGGTGCCCTCGGGCGTGGTGGCGTCCGGTCTCACCTCCGTCGCCGATGCGACCGTCCAGGCCGCGCTCGCGGCTGCCCACCGGCAGGCGGCCGCAACATCGGACGAGCCGCCGTCCGCACGTGTGGCGGTGATCGCCATGGGCCGCTTCGGCGGCGCCGAGATGGGTTACTCATCGGATGCCGACGCACTGTTCGTGGCCGCGCCGGCGTGGCCCGGGGCAGACCCCGCGAAGGTGCTCGTGGACGGGACTGCGATCGCCGACATCACCACCCGCCTGCTCGGCCGGCCCAGCCCCGACCCCGCCCTGCTCATCGACGCGGACCTGCGTCCGGAGGGCCGCAGCGGGCCGCTGGTGCGGACCGTCGAGTCGTACGCGCAGTACTGGCAGCGCAACGTCCGCCCGTGGGAGCGGCAAGCGTTGTTGCGAGCCCGGCTGCTCGGCCGTGACGGTTCGACAACCGACGAGCCGGCCGGCGACACTGCCGACAATCTCGCGGAGGCGTTCGTGCGGGCCGTCGACCCGATCCGCTACCCCGACGGCGGCCTGAGCCCGGCCGACGTGCGGGAGATACGCCGCATCAAGGCGCGGGTGGATACGGAACGGCTCCCGCGCGGGGCCGACCGCACCCTGCACACGAAGCTCGGCCGCGGCGGCCTGGCCGACGTCGAGTGGACCGTGCAACTGCTGCAACTCGAGCACGCCCACCGCATCCCCGCCCTGAAGACCACCGGCACCATCCCGGCCATCCACGCCGCGGTCGACGCCGGCCTCATCGACGCCGACGCCGGCCGCGCGCTCATCGAAGGCTGGACCATGGCAAGTCGGGCCCGCAATGCCATCATGCTCGTCACCGGCAAGCCCGGCGACGAGATTCCCGCGCACGGAAGGGTTCTCGCTGGAATCGCGCGCGCCTGCGGCTACCCGGCGGACACCGATCCGGGAGAGTTCGTCGACGACTACCGGCGTGCGACCCGGCACGCCCGGCACGCGGTCGACGTCCTGTTCGACCGGGTATGA
PROTEIN sequence
Length: 1111
MARGARTLARFGLLDTDAVRAGLRVLGLVADGPTSDALIAAAAADSDPQAVLFALGRAGRPQLAVRRLADMVTALRTGDGVDSAPAEASTDAPADLGTTALADPAADFLDTLRTDAAFRARLVGLVGASEPLGEHLVAHPREWQAIAADEPFADATSYARCLGALDAATRGRAGARLSARQVVAPLRIAYRTRLAVIAAADVAPAIELGRPGPTVAEVGQALSALADALLETALAVARDAHPSRAPVRFAVVAMGKCGARELNYVSDVDVLFVASARPANGNTIDGTDSNADNVANADNATNAGDTNNTGGSPAPVGPSPDTDPSDESTALRTATRWATELMSICRQVAWDVDAALRPEGGAGPLVRTIAGYRGYYQRWAKTWEFQALLKARPAAGDKDLGDEFLAVAQPEVWAAAGRADFVADVQAMRRRVRDAVPMPERDRELKLGAGGLRDVEFAVQLLQMVHGRTDETLRRPDTLTALETLTAGGYVGRVDGAELARAYEFERRVEHLVQLQHLLRTHSLPAGQDDLEWLARTAGFAIGGSGTSGPATGGPGVDGAARHLAAELARHGAVVRRLHEKLFYRPLLAAVAAVPADGLRLTTDEAAARLGALGFLAPGGALRHIAALTDGVSRRAAIQRTLLPVLLGMFADAPDPDMGLLGYRTVSDALADTPWYLRLLRDEGLVAERLAALLGTSRLVADLLQRAPEVLRLLAADADLAGPESQATEEMAASALLARAARARTPVAAAAAARSARRHEMLRLACADLLGLVPSGVVASGLTSVADATVQAALAAAHRQAAATSDEPPSARVAVIAMGRFGGAEMGYSSDADALFVAAPAWPGADPAKVLVDGTAIADITTRLLGRPSPDPALLIDADLRPEGRSGPLVRTVESYAQYWQRNVRPWERQALLRARLLGRDGSTTDEPAGDTADNLAEAFVRAVDPIRYPDGGLSPADVREIRRIKARVDTERLPRGADRTLHTKLGRGGLADVEWTVQLLQLEHAHRIPALKTTGTIPAIHAAVDAGLIDADAGRALIEGWTMASRARNAIMLVTGKPGDEIPAHGRVLAGIARACGYPADTDPGEFVDDYRRATRHARHAVDVLFDRV*