KEGG   Francisella cf. novicida Fx1: FNFX1_1086Help
Entry
FNFX1_1086        CDS       T01937                                 

Definition
hypothetical protein (EC:4.2.3.1)
Orthology
K01733  
threonine synthase [EC:4.2.3.1]
Organism
fcf  Francisella cf. novicida Fx1
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:fcf00001]
 Metabolism
  Overview
   01230 Biosynthesis of amino acids
    FNFX1_1086
  Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    FNFX1_1086
  Metabolism of cofactors and vitamins
   00750 Vitamin B6 metabolism
    FNFX1_1086
Enzymes [BR:fcf01000]
 4. Lyases
  4.2  Carbon-oxygen lyases
   4.2.3  Acting on phosphates
    4.2.3.1  threonine synthase
     FNFX1_1086
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
complement(1100010..1101716)
Genome map
AA seq 568 aa AA seqDB search
MNINEISKKINKDYFTQASPCLSKYIPFMPIKDPSSFVSLRESATPLLKSKIIGKELGIN
LYFKVEGKNPTGSFKDRGSAVDITVAKELGAKGIVLASTGNMAASCACYAAAAKMPCFII
VPEGVAASKLAQVMSYGGKIVQVKGSYNEAAKLAYDIAKSKDFFLAGDYAFRVEGQKTAA
FELIDQLLFQVPDEVIIPIGCGTNMTAYYKGFCEYKELGFINSLPKLTGVQSTEADTLAR
AYQKNQNRIEPLKTANTIATAIAVPYPIDGDKAIDAIYSTGGESTAVTDMKMLEAQYLLS
TKEGLFVELASASTIAHLLKKYEEGRLQKGSTVVCVLSGEGLKDPGVVLKSAIQPPIIYP
SETDFDRLYNSHFFDNKTMLFIEQNEVIFDKLPTLDEVKKTLGKLFGANYDESFVAKVRE
LIERFLVKGKSINVSDIQDIIQDATEMADAVSKDVLDVKSFKVKVELDQKSVAEVTVKVA
EQLYFASSSGVGPVDAVLNALCKACPSDISYNLTDYKVKIRGQGADAVVYVEMSLEKEGI
KSIGKAVSPDIIQASVEAFIDAYNIAYA
NT seq 1707 nt NT seq  +upstreamnt  +downstreamnt
atgaatattaatgaaataagtaaaaaaattaacaaagattattttactcaagcctcgcca
tgtttatctaagtatattccctttatgccgataaaagatccatcaagctttgtatcttta
agagaatcagctacaccattgcttaagagtaaaataataggcaaagagttaggaattaat
ctatactttaaagtcgaaggtaaaaaccctactggttcatttaaagatagaggatcagca
gttgatataacagttgcaaaagagcttggagctaagggtatcgtgctagcatctactggt
aacatggcggcttcatgtgcttgttacgctgcagctgcgaagatgccttgctttattatt
gtgccagaaggtgtagcagcttctaagttagctcaggtaatgtcttatggggggaaaata
gttcaggttaagggtagttataacgaagctgcaaagttagcttatgatattgcaaaatca
aaagatttcttcttggctggagactatgcttttagagttgaaggtcaaaaaaccgcagca
tttgaactaatagatcagttattgttccaagtgccagatgaggttataatacctataggt
tgtggcacaaatatgacagcttattataaaggtttttgtgagtataaagagttaggtttt
attaattctttacctaagcttactggtgttcaatctactgaagctgataccttagctaga
gcatatcagaaaaatcaaaatagaattgagcctttaaaaacagcaaatacaatagcaaca
gcaatagctgtgccgtatcctatcgatggtgataaagctatagatgctatatatagtaca
ggtggagaatctacagctgtaacagatatgaaaatgttagaggctcaatatttgctatct
actaaagagggattatttgttgagttagcatccgcgtcaactattgcacacttactcaaa
aagtatgaggaaggaaggcttcaaaaaggtagtacagtagtatgtgtattatctggagaa
ggtctaaaagatccaggtgttgtgcttaaatcagctattcaaccaccaattatatatcct
tcagaaacagattttgacagactgtataatagtcatttttttgacaacaagacgatgtta
tttatagagcaaaatgaagttatatttgataaattacctactcttgatgaagtcaaaaaa
actcttggtaaactttttggtgctaactatgatgagagttttgtagctaaggttagagag
ttgattgagagattcctagttaagggtaaatcaatcaatgtttctgatattcaagatatt
atccaagatgctacagagatggcagatgctgttagcaaagatgttttagatgttaaatca
tttaaggtaaaagtagaattagatcaaaaatctgttgctgaggttactgtaaaagtcgct
gaacagttatactttgcatcaagctctggtgtcggacctgtcgatgctgttttaaatgct
ttgtgtaaagcttgtcctagtgatattagttataatctaactgactataaagtaaaaata
cgtggacagggtgcggatgctgttgtttatgttgaaatgagtttagaaaaagaaggtatc
aagagtattggtaaagcagtatctccagatataattcaggcttcggttgaagcatttatt
gatgcctataatattgcatatgcttaa

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