KEGG   Francisella philomiragia: Fphi_1546Help
Entry
Fphi_1546         CDS       T00652                                 

Definition
hypothetical protein
Orthology
K01733  
threonine synthase [EC:4.2.3.1]
Organism
fph  Francisella philomiragia
Pathway
Glycine, serine and threonine metabolism
Vitamin B6 metabolism
Metabolic pathways
Microbial metabolism in diverse environments
Biosynthesis of amino acids
Module
Threonine biosynthesis, aspartate => homoserine => threonine
Brite
KEGG Orthology (KO) [BR:fph00001]
 Metabolism
  Overview
   01230 Biosynthesis of amino acids
    Fphi_1546
  Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    Fphi_1546
  Metabolism of cofactors and vitamins
   00750 Vitamin B6 metabolism
    Fphi_1546
Enzymes [BR:fph01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.3  Acting on phosphates
    4.2.3.1  threonine synthase
     Fphi_1546
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
JGI: 
UniProt: 
Position
1675929..1677725
Genome map
AA seq 598 aa AA seqDB search
MYKILNFYTKEEVSTDSFVFAGENEPWEIQMDIDEISKKINKDYFTQASPCLSKYIPFMP
IKDPSSFVSLREAATPLLKSKIIGKELGINLYFKVEGKNPTGSFKDRGSAVDITVAKELG
AKGIVLASTGNMAASCACYAAAAKMPCFIIVPEGVAASKLAQVMSYGGKIVQVKGSYNEA
AKLAYDIAKSKDFFLAGDYAFRVEGQKTAAFELIDQLLFQVPDEVIIPIGCGTNMTAYYK
GFCEYKELGFINSLPKLTGVQSTEADTLARAYQKNQNRIEPLKTANTIATAIAVPYPIDG
DKAIDAIYSTGGESTAVTDMKMLEAQYLLSTKEGLFVELASASTIAHLLKKYEEGKLQKG
STVVCVLSGEGLKDPAVVLKSAIQPPIIYPAEADFDRLYNSHFFDNKTMLFIEQNEVIFD
QVPTLEEVKKTLGKLFGANYDQNFLAKVRELIERFLVKGKSINVSDIQDIIQDATEMADA
ISKDILDVQSFKVNVELDQKSVAEVTVKVADQLYFASSSGVGPVDAVLNALCKACPSDIS
YKLTDYKVKIRGQGADAVVYVEMSLEKEGIKSIGKAVSPDIIQASVEAFIDAYNIAYA
NT seq 1797 nt NT seq  +upstreamnt  +downstreamnt
atgtataaaatattaaacttttacaccaaagaagaagtttctacagatagttttgtgttt
gctggggagaatgagccttgggaaattcagatggatattgatgagattagtaaaaaaatt
aacaaagactattttactcaagcatcaccatgtttatctaaatatataccatttatgccg
ataaaagatccatctagttttgtatctttaagagaagcagctacaccattgcttaagagt
aaaataataggtaaagagttaggaattaatctatattttaaggttgagggtaaaaatcct
acaggttcatttaaagatagaggatctgcagttgatataacagttgcaaaagagcttgga
gctaagggtattgtgctagcatctactggtaacatggcggcttcatgtgcttgttatgca
gcagcagctaaaatgccttgttttattattgttccagaaggtgttgcagcttctaaatta
gctcaagttatgtcttatggtggtaaaatagttcaagttaaaggtagttataatgaagct
gcaaaattagcttatgatattgcaaaatcaaaagatttctttttggctggagattatgca
tttagagtcgagggtcaaaagacagcagcatttgaacttatagatcagttattattccaa
gtgccagatgaggttataatacctataggctgtggtacaaatatgactgcttattataaa
ggtttttgtgagtataaagagttaggttttattaattctttgcctaaacttactggtgtt
cagtctactgaagcagatacattagctagagcatatcaaaagaatcaaaatagaattgag
cctctaaaaacagctaatacaattgcaacggcaatagctgtaccatatcctattgatggt
gataaggctatagatgctatatatagtactggtggagagtctactgcagttacagatatg
aaaatgttagaggctcaatatttgctatctactaaagaagggttgtttgtggaactggca
tcagcgtcaactattgcacatttgctcaaaaaatatgaagaaggtaaacttcaaaaagga
agtacagtagtgtgtgtactatctggagaaggtctaaaagatcctgcggtagttctgaaa
tctgctattcagccaccaattatatatcctgcagaggctgattttgacagactttataat
agccatttctttgataataagacaatgttattcatagagcaaaatgaagtaatatttgat
caagttccaactcttgaggaagttaaaaaaactcttggcaaattgttcggagcaaattat
gatcagaatttcttagctaaggttagagagctgattgagagattcttagtcaagggtaaa
tcaattaatgtctctgatatacaagatattatccaagatgctactgagatggcagatgcc
attagtaaagatatcttagatgtacagtcatttaaggtaaatgtagagctagatcaaaaa
tctgtagccgaagttactgttaaggttgcagaccagttatactttgcatcaagttctggt
gttgggcctgtagatgctgttttaaatgctttatgtaaagcttgcccgagtgatattagc
tataagctaactgactataaagtgaaaatacgtgggcaaggtgctgatgctgttgtttat
gtagagatgagcttagaaaaagaaggtattaaaagtattggtaaagcagtttctccagat
ataatccaagcatctgtagaagcatttatagatgcatacaatattgcgtatgcataa

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