KEGG   Vibrio tubiashii: IX91_12780
Entry
IX91_12780        CDS       T03445                                 
Symbol
pyrG
Name
(GenBank) CTP synthetase
  KO
K01937  CTP synthase [EC:6.3.4.2]
Organism
vtu  Vibrio tubiashii
Pathway
vtu00240  Pyrimidine metabolism
vtu01100  Metabolic pathways
vtu01232  Nucleotide metabolism
vtu01240  Biosynthesis of cofactors
Module
vtu_M00052  Pyrimidine ribonucleotide biosynthesis, UMP => UDP/UTP,CDP/CTP
Brite
KEGG Orthology (KO) [BR:vtu00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00240 Pyrimidine metabolism
    IX91_12780 (pyrG)
Enzymes [BR:vtu01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.4  Other carbon-nitrogen ligases
    6.3.4.2  CTP synthase (glutamine hydrolysing)
     IX91_12780 (pyrG)
SSDB
Motif
Pfam: CTP_synth_N GATase Peptidase_C26 CbiA
Other DBs
NCBI-ProteinID: AIW15041
UniProt: F9T5G1
LinkDB
Position
1:complement(2753713..2755353)
AA seq 546 aa
MTTNYIFVTGGVVSSLGKGIAAASLAAILEARGLKVTMMKLDPYINVDPGTMSPTQHGEV
FVTEDGAETDLDLGHYERFIRTKMTKRNNFTAGRVYSDVLAKERRGDYLGATIQVIPHIT
NSIKDRVIAGSEGHDVAIVEVGGTVGDIESLPFMEAIRQLAVELGRERAMFMHLTLVPYL
AAAGEVKTKPTQHSVKELLSIGIQPDILVCRSDRMIPANERKKIALFCNVQEKAVISMKD
VDSIYKIPQLIKSQGLDDLVCSRFGITAPEADLSEWEQVIYEEANPTGEVTIGMVGKYIE
LPDAYKSVNEALKHAGLKNRLSVKIKYVDSQDVESKGNEALEGLDAILVPGGFGDRGVEG
KILAAKYARENKVPYLGICLGMQVALIEYARNVAGMEGAHSTEFNKETKYPVVGLITEWV
DGEGNVEERTEKSDLGGTMRLGSQLCHLEKGTKARELYGSATIHERHRHRYEVNNNLRPQ
IEKAGLKVSGLSADKKLVEVIENPAHPWFVAAQFHPEFTSTPRDGHPLFAGFVKAAGEYQ
RDELEK
NT seq 1641 nt   +upstreamnt  +downstreamnt
atgacgacaaattacatttttgttactggcggggttgtatcctctctaggtaaaggtatt
gcagcagcatcgcttgcagctattttagaagctcgtggtcttaaagtgactatgatgaag
cttgacccttacatcaacgttgatccaggcacgatgagcccgactcaacacggtgaggtg
ttcgtcactgaagatggcgctgaaactgacctagaccttggtcactacgagcgtttcatc
cgcaccaaaatgactaagcgtaacaacttcactgcaggtcgtgtttactcagacgttcta
gctaaagagcgtcgtggtgattacctaggtgcaacaattcaggttatccctcacatcact
aactctatcaaagaccgcgtaatcgcaggttctgaaggtcatgatgttgctatcgttgaa
gtgggcggtacggtaggtgatatcgagtctctgccatttatggaagctattcgtcagcta
gcagtagagctaggccgtgaacgcgcaatgttcatgcacctaactctagttccttaccta
gcagcagcgggcgaagtgaaaactaaaccgactcagcactctgtaaaagagctgctttct
atcggtatccagccagatattcttgtttgtcgctctgatcgcatgatcccagcgaatgaa
cgtaagaagatcgctcttttctgtaacgtacaagagaaagcggttatctctatgaaggac
gtagattcaatctacaagatccctcaactaatcaaatctcaaggtttagacgacctagta
tgttctcgtttcggtattactgctcctgaagcagatctgtcagaatgggaacaggtaatc
tacgaagaagcgaacccaacgggtgaagtgactatcggtatggttggtaagtacatcgaa
ctaccagatgcttacaaatcagtaaacgaagcacttaagcacgcaggtcttaagaaccgt
ctaagcgttaagattaagtacgttgattcacaagacgtagaaagcaaaggtaatgaagcg
ctagaaggtctagacgctatcttagtaccaggtggcttcggtgaccgtggcgtagaaggt
aagatccttgcggctaaatacgctcgtgaaaacaaagtaccttacctaggtatttgtcta
ggtatgcaagtggcactgatcgaatacgcgcgcaacgttgcgggtatggaaggtgcacac
tcaacagaatttaataaagagactaaataccctgtagttggtctgattactgagtgggta
gacggcgaaggtaacgttgaagagcgtactgagaagtctgacctaggcggtacaatgcgt
cttggttcacagctatgtcaccttgagaaagggacgaaagcgcgtgaactatacggtagc
gcgacaatccacgaacgtcaccgtcaccgttacgaagtgaacaacaacctacgtccacag
attgaaaaagcaggcctgaaagtttctggtctatctgctgacaagaaactggttgaagta
attgagaacccagctcacccatggtttgtagcggctcaattccacccagagttcacttca
acacctcgcgatggtcacccactgtttgcaggtttcgtgaaagcggctggtgaataccaa
cgcgacgaattagagaagtaa

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