KEGG   Oricola thermophila: HTY61_04150
Entry
HTY61_04150       CDS       T06643                                 
Symbol
ilvA
Name
(GenBank) threonine ammonia-lyase IlvA
  KO
K01754  threonine dehydratase [EC:4.3.1.19]
Organism
orm  Oricola thermophila
Pathway
orm00260  Glycine, serine and threonine metabolism
orm00290  Valine, leucine and isoleucine biosynthesis
orm01100  Metabolic pathways
orm01110  Biosynthesis of secondary metabolites
orm01200  Carbon metabolism
orm01230  Biosynthesis of amino acids
Module
orm_M00570  Isoleucine biosynthesis, threonine => 2-oxobutanoate => isoleucine
Brite
KEGG Orthology (KO) [BR:orm00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    HTY61_04150 (ilvA)
   00290 Valine, leucine and isoleucine biosynthesis
    HTY61_04150 (ilvA)
Enzymes [BR:orm01000]
 4. Lyases
  4.3  Carbon-nitrogen lyases
   4.3.1  Ammonia-lyases
    4.3.1.19  threonine ammonia-lyase
     HTY61_04150 (ilvA)
SSDB
Motif
Pfam: PALP Thr_dehydrat_C Glyco_hydro_99
Other DBs
NCBI-ProteinID: QKV17715
UniProt: A0A6N1VDM4
LinkDB
Position
885339..886592
AA seq 417 aa
MSDFPDAVAEATAAMRGLFPETPLQENVFLGRKYGMRVFLKREDLSPVRSYKIRGAFNFI
RKRLAEGAEGPFVCASAGNHAQGLAYVCRHFDRQGVIFMPVTTPQQKIDKTRAFGGDNVE
IRLIGDYFDDCNRAALDYAEAEGAVMVPPFDDEDIIEGQASVALEALEQAPAGVQFDRVI
AAVGGGGLASGLTRYFSAKGEAAAFTLVEPAGAPSLRQSLEKGERVRLQGFDNFVDGAAV
GQIGEKTWEVLRRYAPGDVDLVAEDRLCTTMIEMLNVEGVVLEPAGALAIDALKDIAPRE
RDGKTVLCIVSGGNFDFERLAEVKERALRSEGLKKYFVLRMPQRPGALKDFLTLLGPDDD
ITRFEYLKKSARNFGSVLIGIETKDPANFAGLMARMNDKGLAWQDLTDNELVGGLLV
NT seq 1254 nt   +upstreamnt  +downstreamnt
atgagtgattttcccgacgccgtcgccgaagccaccgccgccatgcgcggcctgtttccc
gaaacgccgctgcaggagaacgtgttcctgggccgcaagtatggcatgcgcgtattcctc
aagcgcgaggacctgtcgcccgtgcgctcctacaagatccgcggcgcattcaacttcatc
cgcaagcggcttgccgagggcgcggaagggcctttcgtctgcgcatcggccggcaaccac
gcccaggggctcgcctatgtgtgccggcatttcgaccggcagggcgtcatcttcatgccg
gtgaccacgccgcagcagaagatcgacaagacccgcgccttcggcggggacaatgtcgag
atccggctgatcggagactatttcgacgactgcaaccgcgcggcgctggactatgccgag
gctgagggcgcggtgatggtgccgcccttcgacgacgaggacatcatcgaggggcaggca
tccgtggcactggaggcgctggaacaggcgccggccggggtgcagttcgaccgcgtgatc
gccgcagtcggcggcggcgggctggcgagcgggctgacgcgctacttctcggcgaagggc
gaggcggctgccttcacgctggtcgagccggcaggcgcgccgagcctccggcagagcctc
gagaagggcgaaagggtacgcctgcagggcttcgacaatttcgtcgacggggcggcggtc
ggccagatcggcgagaagacgtgggaggtgcttcgccgctacgcgcctggcgacgtcgat
ctcgttgccgaggaccgactctgcaccaccatgatcgagatgctgaacgtggagggtgtg
gtgctggagccggcgggggcgctggccatcgatgcgctgaaggatatcgcgccgcgggag
cgcgacggcaagacggtgctgtgcatcgtctctggcgggaacttcgacttcgagcggctg
gccgaggtcaaggagcgggccctgcgctcggaagggctgaagaaatatttcgtgctgcgg
atgccgcagcggcccggtgcactgaaggactttcttaccctgctcggccccgacgacgac
atcacccgcttcgagtacctcaagaaatccgcccgcaatttcgggtcggtgctgatcggc
atcgagacgaaggatccggcgaatttcgccgggctgatggcgcggatgaacgacaaggga
ctggcctggcaggatctcaccgacaacgagctggtgggtggcctgctggtctag

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