Mycolicibacterium sarraceniae: MSAR_37930
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Entry
MSAR_37930 CDS
T07083
Symbol
pyrG
Name
(GenBank) CTP synthase
KO
K01937
CTP synthase [EC:
6.3.4.2
]
Organism
msar
Mycolicibacterium sarraceniae
Pathway
msar00240
Pyrimidine metabolism
msar01100
Metabolic pathways
msar01232
Nucleotide metabolism
msar01240
Biosynthesis of cofactors
Module
msar_M00052
Pyrimidine ribonucleotide biosynthesis, UMP => UDP/UTP,CDP/CTP
Brite
KEGG Orthology (KO) [BR:
msar00001
]
09100 Metabolism
09104 Nucleotide metabolism
00240 Pyrimidine metabolism
MSAR_37930 (pyrG)
Enzymes [BR:
msar01000
]
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.4 Other carbon-nitrogen ligases
6.3.4.2 CTP synthase (glutamine hydrolysing)
MSAR_37930 (pyrG)
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Gene cluster
GFIT
Motif
Pfam:
CTP_synth_N
GATase
Peptidase_C26
CbiA
Motif
Other DBs
NCBI-ProteinID:
BBY60657
UniProt:
A0A7I7SUG3
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Position
3715652..3717415
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AA seq
587 aa
AA seq
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MPPLRKHLQTATKHLFVSGGVVSSLGKGLTASSLGQLLTARGLYVTMQKLDPYLNVDPGT
MNPFQHGEVFVTEDGAETDLDVGHYERFLDRNLSGFANVTTGQVYSSVIAKERRGEYLGD
TVQVIPHITDEIKSRILAMARPDENGNRPDVVITEIGGTVGDIESLPFLEAARQVRHEVG
RANCFFLHVSLVPFLKPSGELKTKPTQHSVAALRSIGISPDALILRCDRDVPEPMKNKIA
LMCDVDIDGVISTPDAPSIYDIPKVLHREELDAYVVRRLNLPFRDVDWTQWNDLLRRVHE
PKETVRIALVGKYIDLSDAYLSVAEALRAGGFAHHTKLEMRWVASDDCDTDAGAAAALGD
VDGVLVPGGFGIRGIEGKIGAIHYARTRGIPVLGLCLGLQCIVIEAARSVGLTEASSAEF
DPDTPDPVIATMADQEQIVAGEADLGGTMRLGAYPATLEAGSIVAEAYEATHVSERHRHR
YEVNNSYRDQIAQSGLRFSGTSPDGHLVEFVEYPREVHPFLVGTQAHPELKSRPTRPHPL
FVSFVGAAIEYKAAERLPVEIPEQHSNGKEHSAQALAEQVPEHSSRG
NT seq
1764 nt
NT seq
+upstream
nt +downstream
nt
ttgccaccactgcgtaagcacctgcagaccgctactaagcacctcttcgtcagcggtgga
gtcgtttcgtccctcggcaaggggctcaccgcaagcagtctcggtcagttgctgactgcc
cgcgggctctatgtcaccatgcagaagctcgacccgtacctcaacgtcgacccgggcacg
atgaacccgttccagcatggcgaggtgttcgtcaccgaggacggcgccgagaccgatctt
gacgtcggccactacgagcgcttcctggaccgcaatctgtccgggttcgcgaatgtgacc
accgggcaggtgtattcgtcggtgatcgccaaggagcgtcgcggcgagtacctcggtgac
accgtccaggtgatcccgcacatcaccgatgagatcaagagccgcattctggcgatggcc
cgtccggacgagaacggcaaccggcccgatgtggtgatcaccgagatcggcggcaccgtc
ggtgatatcgaatcactgccgttcctggaggccgcgcggcaggtgcgtcacgaggtcggc
cgggcgaactgcttcttcctgcacgtctcattggtgccgttcctcaagccgtcgggcgaa
ctgaagaccaagcccacccagcactcggtggccgcgctgcgcagcatcggcattagccct
gacgccctgatcctgcgctgcgaccgcgacgtccccgagccgatgaagaacaagatcgcg
ctcatgtgcgacgtcgacatcgacggagtgatctccacaccggatgccccgtcgatctac
gacatccccaaggtgctgcatcgcgaagagctcgacgcgtatgtggtacgccggctcaat
ctaccgttccgcgacgtcgactggacgcagtggaacgatctgctgcgccgggtgcatgag
cccaaagagacggtgcgaattgctctggtgggcaagtacatcgatctttccgacgcctac
ctgtcggtggccgaggcgctgcgcgccggcgggttcgcgcatcacaccaagctggagatg
cgctgggtggcctctgacgattgcgacaccgatgccggtgcggccgcggcgctgggcgac
gtcgacggcgtgctggttcccggcgggttcggcattcgcggtatcgagggcaagatcggt
gccatccactacgcccgcacccgcgggatcccggtcctcgggttgtgcctcggcctgcag
tgcatcgtcatcgaagcggcgcgctcggtcgggctcaccgaagccagttccgcggagttc
gaccccgacactccggacccggtgatcgccacgatggccgaccaggaacagatcgtggcc
ggtgaagccgacctgggtggcaccatgcgactgggtgcctacccggcaacgctggaagcc
ggatcgatcgtggccgaggcttatgaggccacgcacgtctccgagcggcaccggcaccgc
tacgaagtcaacaactcctaccgcgatcagatcgcgcagagcggactgcggttctcgggg
acttcgccggacggtcacctggtcgagttcgtcgaatatccccgcgaggtacacccgttc
ctggtcggtacacaggcccaccccgaactgaagagccggccgactcgtccgcacccgttg
ttcgtctcgttcgtcggtgcggcgatcgaatacaaggcggccgagcggctgccggtggag
attcccgaacagcactccaacggaaaggagcactcggcgcaggcactggccgagcaggtt
ccagagcactcatctcgtggctga
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