KEGG   Pragia fontium: QQ39_13510
Entry
QQ39_13510        CDS       T03952                                 
Symbol
tyrA
Name
(GenBank) chorismate mutase
  KO
K14187  chorismate mutase / prephenate dehydrogenase [EC:5.4.99.5 1.3.1.12]
Organism
pfq  Pragia fontium
Pathway
pfq00400  Phenylalanine, tyrosine and tryptophan biosynthesis
pfq00401  Novobiocin biosynthesis
pfq01100  Metabolic pathways
pfq01110  Biosynthesis of secondary metabolites
pfq01230  Biosynthesis of amino acids
Module
pfq_M00024  Phenylalanine biosynthesis, chorismate => phenylpyruvate => phenylalanine
pfq_M00025  Tyrosine biosynthesis, chorismate => HPP => tyrosine
Brite
KEGG Orthology (KO) [BR:pfq00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00400 Phenylalanine, tyrosine and tryptophan biosynthesis
    QQ39_13510 (tyrA)
  09110 Biosynthesis of other secondary metabolites
   00401 Novobiocin biosynthesis
    QQ39_13510 (tyrA)
Enzymes [BR:pfq01000]
 1. Oxidoreductases
  1.3  Acting on the CH-CH group of donors
   1.3.1  With NAD+ or NADP+ as acceptor
    1.3.1.12  prephenate dehydrogenase
     QQ39_13510 (tyrA)
 5. Isomerases
  5.4  Intramolecular transferases
   5.4.99  Transferring other groups
    5.4.99.5  chorismate mutase
     QQ39_13510 (tyrA)
SSDB
Motif
Pfam: CM_2 PDH_N PDH_C
Other DBs
NCBI-ProteinID: AKJ42957
UniProt: A0ABQ5LM26
LinkDB
Position
complement(3077921..3079042)
AA seq 373 aa
MVAELTTLRDQIDEVDKALLKLLAKRLDLVAEVGEVKSQYGLPIYVPEREISMLASRREE
AQQLGVPPDLIEDVLRRIMRESYTSENDKGFKTLKPEMGPIVIVGGQGKMGQLFSKLLKL
SGYQVRVLEQNDWPDAESILSGAGMVMVSVPIHITEQVIQRLPKLPEACILVDLASVKSP
PLQAMLDVHSGPVLGLHPMFGPDVGSLAKQVIAYCDGRQPEAYQWFLQQLQVWGAKLQAI
NAVEHDKNMAFIQALRHFATFTYGLNLSHEKVQLEQLLALSSPIYRLELAMIGRLFAQDA
ELYADIIMSSKDNLALIKRYYACFGDAIGWLENGDKAEFIDNFNQVKAWFGDYATHFLNE
SRTLLRQANDSRQ
NT seq 1122 nt   +upstreamnt  +downstreamnt
atggtggctgagctgacgaccctgcgcgatcagattgacgaagttgataaagcgttatta
aaactgctggcaaaacggttggatctggttgcagaagtcggagaggtaaagagccaatat
ggtttacctatttatgttcctgaacgtgaaatcagtatgttggcttctcgacgtgaagaa
gcgcagcaacttggtgtgccgcctgatttaatcgaagatgtgctgcgtcgcattatgcgt
gaatcgtacaccagtgaaaacgataaaggctttaagacattaaagccggagatggggccg
atcgtgattgttggtggtcagggcaaaatgggacagctgttcagtaaattgcttaagctc
tccggctatcaggttcgcgtgctggagcagaatgactggcctgatgctgaaagcattctc
tctggagcaggaatggtgatggtcagcgtaccgattcatatcactgaacaggttattcag
cgactgcctaagctaccagaggcgtgtattctggtggatttagcatcggtgaagagtccg
ccattgcaggcgatgttggacgtccatagcggaccagtactcggtttgcacccgatgttt
ggtcctgatgtgggcagtttggccaagcaggttattgcttattgtgatggacgtcagcca
gaagcctatcagtggtttttgcagcagcttcaggtgtggggtgccaagctacaggcgatc
aatgctgtagaacacgataaaaatatggcgtttattcaggcattacgtcactttgctacc
tttacctatgggctaaacctctcccatgagaaggtgcagcttgaacagctgttagcgctg
tcttcaccgatttatcgtttggaactggcgatgattggccgcctgtttgctcaagatgct
gagctgtatgcggatatcattatgtcgtccaaagataacctggcattgattaaacgctat
tatgcctgctttggtgatgccattggttggttggagaatggtgataaagcggagtttatc
gataactttaatcaggtgaaagcgtggtttggggattacgcgacgcacttcttaaacgaa
agtcgtacgctgttgcgtcaggctaatgatagtcgacaataa

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