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ACD51_11_21

Organism: PER_ACD51

near complete RP 49 / 55 MC: 15 BSCG 46 / 51 MC: 5 ASCG 0 / 38
Location: comp(15444..16964)

Top 3 Functional Annotations

Value Algorithm Source
Phosphoenolpyruvate carboxylase n=2 Tax=Leptospirillum sp. Group II RepID=A3EQI3_9BACT (db=UNIREF evalue=8.0e-143 bit_score=510.0 identity=49.21 coverage=98.0276134122288) similarity UNIREF
DB: UNIREF
  • Identity: 49.21
  • Coverage: 98.03
  • Bit_score: 510
  • Evalue 8.00e-143
phosphoenolpyruvate carboxylase rbh KEGG
DB: KEGG
  • Identity: 49.2
  • Coverage: 504.0
  • Bit_score: 506
  • Evalue 1.00e-140
phosphoenolpyruvate carboxylase similarity KEGG
DB: KEGG
  • Identity: 49.2
  • Coverage: 504.0
  • Bit_score: 506
  • Evalue 1.00e-140

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Notes

PEP + HCO3 to OAA + Pi Together you can bypass pyruvate kinase with malic enzyme and PEP carboxylase Used for fermentative aa synthesis to get lysine/threonine from OAA in Cornybacterium glutamicum Part of PEP-pyruvate-OAA node- highly relevant switch for carbon flux distribution in central metabolism. Archaea have a different amino acid structure than bacteria nad plants. (Sauer, 2005) kelly wrighton (11/15/12)

Taxonomy

RIFOXYC2_FULL_Peregrinibacteria_41_22_curated → Peregrinibacteria → Bacteria

Sequences

DNA sequence
Length: 1521
ATGTTCAATCCGAAATCCAAGATGAAAATCCCGATGCTGATGGCAACACAGCACCCTGATAACGCAAACGCTCCTTTTTGGGGCAAAGACGCATTCATAACAACAAAAGAAGAAGCCGAAGAAATCTATCAATCTTTCAACATAGGATGCGACGAATACATGTGGGACTGGGAAGGAAAATTCGCAGATGAAGCTATGATAGAACGCCTAGTAACAAATTACTTCAAATACTTCAAAGAACATCAATTAGGGAAAGACAAGGCAATTCTAATGCGCGTCCCAAACATCTGGGAAGAAAAAACATTCAAACTCGCTCGCGCCTACATGAGCATATTATCAAGCGCGGAATTCACGAAATCGCTCAAACTCAATACCCCTCCGGTTTTCGAGCTTATTTTGCCTATGACGAAGAAAGCAGAACAACTTATTCACTTGCAAGAAACATTCAAAAAGACTGCAAAACTCCACGAAGGCATTTTCGGCGAAACAGAATTTGGACAAGGTTACATCCACGTCATTCCATTATTCGAGAGCGTCGATGATCTGGCAAACTGCGCAAAAATACTGGAAGAATTTTTACACCTTCACCAAAAACATTTCGGCGCACGCCCACCATACTTAAGAGTGTTCGTAGCAAGATCGGATCCCGCCTTGAACGCAGGATTCGTCTCGGCAGTCCTTGCAACACGACTCGCTCTGCGCGAAATACATCGGGTAAGTAAGAAAACCGGTATCCCGATGTATCCGATCATAGGCACAGGCTCTCTGCCGTTTCGAGGAGGAATCAATCCGGAAAACATAGAACAAAGCCTCCCTCAATACGAAGGGGCAAAAACTATAACAATTCAGTCCGCATTCAGATACGACTACCCATTACCAACTGTAAAAAAGGCTTTGGATTTTATCAAAAAAACTCTTCAAAAAAACTCCAAAGTCGTATTCGATCAAAAAACATTTTCGGATCTAAAAACCCTGACAGAAATTTTCAAAAAACCTTATGTCGAAACGATAGAAAAATTCGCCCCTATGATAAACGAACTGTCGAAATTTGTTCCGCAAAGACGCGAACGCGTACAACATATCGGACTGTTCGGATACAACCGCGGAATCGGAGAAATCAAACTACCGCGCGCAATAAGCTTCACGTGCGCCTGCTACTCGATCGGAATACCTCCGGAATTCATAGGATCAGGCCGAGGACTGGTTCAAGCAAAAAAACAAGGACTGCTGCCATTAATAGAACTGCACTTCCCCACTTTGCGTCACGAGCTCAAACACGCCGGCAAATATCTCAATCGTGAGAACTTGGCAATACTTGCAAAAGAAAATTCATGGGCGCGCGAAATCGAGAAAGATATATCGGTTTGCGAAAAAATTCTCGGAATTGAACTTGGCCCGCAAAAAGAACATCACTTCTTACACAGAAATTTAACATCAAATATCTTGCTCAAACACAAGATCAGCAAGGATTTTTCGCAAGATCTTGTAGAAGCTGCCATATTTAGAAAAAGTCTGGGATGA
PROTEIN sequence
Length: 507
MFNPKSKMKIPMLMATQHPDNANAPFWGKDAFITTKEEAEEIYQSFNIGCDEYMWDWEGKFADEAMIERLVTNYFKYFKEHQLGKDKAILMRVPNIWEEKTFKLARAYMSILSSAEFTKSLKLNTPPVFELILPMTKKAEQLIHLQETFKKTAKLHEGIFGETEFGQGYIHVIPLFESVDDLANCAKILEEFLHLHQKHFGARPPYLRVFVARSDPALNAGFVSAVLATRLALREIHRVSKKTGIPMYPIIGTGSLPFRGGINPENIEQSLPQYEGAKTITIQSAFRYDYPLPTVKKALDFIKKTLQKNSKVVFDQKTFSDLKTLTEIFKKPYVETIEKFAPMINELSKFVPQRRERVQHIGLFGYNRGIGEIKLPRAISFTCACYSIGIPPEFIGSGRGLVQAKKQGLLPLIELHFPTLRHELKHAGKYLNRENLAILAKENSWAREIEKDISVCEKILGIELGPQKEHHFLHRNLTSNILLKHKISKDFSQDLVEAAIFRKSLG*