KEGG   Taylorella equigenitalis MCE9: TEQUI_1015Help
Entry
TEQUI_1015        CDS       T01390                                 

Definition
asparagine synthase (EC:6.3.5.4)
Orthology
K01953  
asparagine synthase (glutamine-hydrolysing) [EC:6.3.5.4]
Organism
teq  Taylorella equigenitalis MCE9
Pathway
Alanine, aspartate and glutamate metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:teq00001]
 Metabolism
  Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    TEQUI_1015
Enzymes [BR:teq01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.5  Carbon-nitrogen ligases with glutamine as amido-N-donor
    6.3.5.4  asparagine synthase (glutamine-hydrolysing)
     TEQUI_1015
Peptidases [BR:teq01002]
 Cysteine Peptidases
  Family C44
   TEQUI_1015
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
1063617..1065500
Genome map
AA seq 627 aa AA seqDB search
MCGILGWKSKNTKIDKQLIRNMAETIAHRGPDGEGFYYSEDSSLCLAHKRLAIIDPQNGQ
QPMSTHDNDLVVTFNGAIYNYIELRRELINLGYPLKSYSDTEVLLYAYKEWGIKCLDKFN
GMFAFVIHDKKNRKLFGARDRLGEKPLYYFKDKNNFIFASEIKAILASKLVSPELNYYSL
HEYLTFQYYLEDNTLFNNIFKIKPGHYFCLNEDSFQLEINEYWDIIHTKIQEEHSEDFYV
DNLKALINDSISMRLRADVPLGSHLSGGIDSSAVAAMNALRLGESFKLKTFTGRFLEGAD
YDETKYAKEVSELIHSEYNEIIIKDSDFLEHIDDIIWYMDEPQAGPGVFSQYMVAKYASK
KVKVVLGGQGGDETFLGYTRYFLAYYEKMLKRNIESKGDYYQRVLNSMTPNLYQLNGYQP
LMQDFFAKGLFGSDSKRYFRLSDRFSSNESIFSKEFLVSGYDLFEKFDKIFSKYDTSIAN
KMSYFDMKTFLPSLLHVEDRTSMVNGIESRVPLLDHRIIEFAATVPVHIKFKDGINKYLP
KRIFKNIIPDSIIERKDKKGFPTPTNLWFKTSLNKWVKDLLSDRRTIERGLYQKDELLKL
IDGSSQFGRSLWGVINLELWHRKFIDK
NT seq 1884 nt NT seq  +upstreamnt  +downstreamnt
atgtgtggaattttaggctggaaaagcaagaatactaagattgacaaacaactaattaga
aatatggctgaaaccatcgctcataggggtccagatggtgaggggttttattattcagaa
gattccagcttatgtcttgctcataaaagactagcaattattgacccccaaaatggacaa
caaccaatgagtactcatgacaatgatttggttgttacctttaatggagcaatatataac
tatattgaacttaggcgtgaacttataaatctcggttatcctttaaaaagttatagtgat
accgaagtacttctgtatgcttataaagaatggggaattaaatgccttgataaattcaat
ggtatgtttgcgtttgtcattcatgataaaaaaaatcgcaagctattcggagctagagat
agattgggggaaaagcctctttactactttaaggacaaaaataattttatttttgcttct
gaaataaaagccattcttgcttcaaaattagtctcacctgaactcaattattatagcctt
cacgagtatttaacttttcaatattatctagaagataatacgttgtttaataatattttt
aagattaaacctggacactatttttgtttgaatgaggatagttttcaactggaaattaat
gagtattgggacataatccataccaaaattcaagaagaacattctgaagatttctatgta
gataatcttaaagcattaattaacgattctataagtatgaggttaagggcagatgttcct
ttgggtagccacttaagtggtggaattgattcctccgcagtagctgcaatgaatgctctc
agattgggggaaagttttaagcttaaaactttcactggaaggtttttggaaggagccgat
tacgacgaaactaaatatgcaaaagaagtatctgagctcatccatagtgaatacaacgaa
attatcattaaagattcagattttcttgaacacatcgatgacataatttggtatatggat
gaacctcaagctggacctggcgttttttctcaatacatggttgccaagtacgcaagtaaa
aaagttaaagtagttcttggagggcaaggtggagatgaaacattcttgggctatacaaga
tatttcttggcttattacgaaaaaatgcttaaaagaaatatagaatctaagggagattat
tatcagagggttttaaactctatgacacctaatctttaccagctcaatggatatcaacca
ctgatgcaagatttctttgctaaagggttgttcggtagtgattctaaaagatacttccgt
ctaagtgatagattctcatctaatgaatctattttctcaaaggaattcttggtatcaggg
tatgacttgtttgaaaaatttgacaaaattttctctaaatatgatacctctattgctaac
aaaatgagttatttcgatatgaagacgttcttgccttctttattgcatgttgaggataga
actagcatggtgaatggtatagaatccagagttccactgttggatcatagaataattgag
tttgctgctacagttcccgttcatattaaatttaaggatggtattaataaatatttacca
aaacgaatttttaaaaatattatccctgatagcattatcgaaagaaaggataaaaaagga
tttcctactccaacaaatctttggtttaaaacaagcctaaataaatgggttaaagattta
ctctcagatagaagaacaattgaaagagggttatatcaaaaggatgagttacttaaatta
attgatggaagtagtcaatttggaaggtctctatggggggtcattaatcttgaactatgg
cataggaagtttatagacaaatga

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