KEGG   Cotesia glomerata: 123266352
Entry
123266352         CDS       T07738                                 
Name
(RefSeq) trifunctional purine biosynthetic protein adenosine-3
  KO
K11787  phosphoribosylamine--glycine ligase / phosphoribosylglycinamide formyltransferase / phosphoribosylformylglycinamidine cyclo-ligase [EC:6.3.4.13 2.1.2.2 6.3.3.1]
Organism
cglo  Cotesia glomerata
Pathway
cglo00230  Purine metabolism
cglo00670  One carbon pool by folate
cglo01100  Metabolic pathways
Module
cglo_M00048  De novo purine biosynthesis, PRPP + glutamine => IMP
Brite
KEGG Orthology (KO) [BR:cglo00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    123266352
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    123266352
Enzymes [BR:cglo01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.2  Hydroxymethyl-, formyl- and related transferases
    2.1.2.2  phosphoribosylglycinamide formyltransferase 1
     123266352
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.3  Cyclo-ligases
    6.3.3.1  phosphoribosylformylglycinamidine cyclo-ligase
     123266352
   6.3.4  Other carbon-nitrogen ligases
    6.3.4.13  phosphoribosylamine---glycine ligase
     123266352
SSDB
Motif
Pfam: GARS_A Formyl_trans_N GARS_N AIRS_C GARS_C AIRS ATP-grasp_3 ATP-grasp ATP-grasp_2 CPSase_L_D2 ATP-grasp_4
Other DBs
NCBI-GeneID: 123266352
NCBI-ProteinID: XP_044586520
LinkDB
Position
LG5:complement(21520094..21525357)
AA seq 1003 aa
MVGEKVLVIGGGGREHAICWKLAQSPHVEQIYVSPGNCGMQKINKVTLINLNVKNNKEVT
EWCKNNSISLVAVGPEEYLANGIADELKTRGVMCFGPEKSAALIESDKDWAKSFMDRHKI
PTAQWRSFTSAEEAKLFVKNAPFRALVIKATGLAAGKGVVVAASEDEACFAIDEMLVDKK
FGAAGETIVVEELLEGEEVSMLAFTDGKTFKMMPPTQDHKRIFDGDLGPNTGGMGAYGPC
HLLTPEDQEIVRKVLESAIRGFQDDKLPYVGVLYAGLMLTKSGPKVLEFNCRFGDPETQI
IMPLLDSDLFLIMKSCCQGNLSSLNINWHADKFAVGVILASRGYPASSSKGQVITNISSI
ESCPNHFVFHSGTALSNGEIVTNGGRVLITTCISSSLESAAAKATIAAREISFDGKQFRK
DIAHKGIASSILKSGTLSYKSSGVDIEAGDSLVGRIKSLVSGTKTSGVLGSIGGFGGLFD
TRAAGFVDPILVSGTDGVGTKLKIAIEAGKHQTVGIDLVAMCVNDVLAHGAQPLFFLDYF
ACGHLDVNVAAEVVSGIVEGCKRAGCSLIGGETAEMPDMYSTGDYDLAGFAVGAVERGNL
LPRSEEIGEGDVVIGLPSSGVHSNGFSLVRKILKLNGICLNDTAPFSTQTFAEELLEPTR
IYTRNVVEALKAKVVKAFAHITGGGLVENVPRVLPPGLAVVLDAEKWKIPKIFGWLATAG
GVNEAEMLRTFNCGIGGVIVCAKQHQDRVLKLLEAEDAVVVGSVVKKIDKPTVVVNFLRA
IESEMRRYVPMLMERLVSPCKKVGVLISGSGTNLQALIDATRDPAERMCAEIVLVLSNKP
GVEGLERAKRAGIPTSVIKHADYKTREEFDETMDQELSAKGVEIVCLAGFMRILSEKFVR
KWKGALLNVHPSLLPAFKGANAHKDVLEMGVRVTGCTVHFVEVEIDSGAIIEQEAVPVLP
DDTVQTLQERVKVAEHRTYPKALQYLATGRIGLDANGKIYWNY
NT seq 3012 nt   +upstreamnt  +downstreamnt
atggttggggaaaaagttttagttattggcggtggtggacgagaacatgccatttgttgg
aaactagctcaatctcctcatgttgaacaaatctacgtctctcctggaaactgtggtatg
caaaaaataaacaaagtgactctgataaacctgaacgttaaaaacaacaaagaagtgact
gagtggtgtaaaaacaattcaataagtctggtagcagttggtccggaagaatacttagca
aatggtatcgcagatgaattaaaaaccaggggagtgatgtgtttcgggcccgagaaatca
gcagcgctcatagaatccgacaaagattgggcaaagtcgtttatggaccgacacaaaatt
cccaccgcacaatggcgatctttcacatccgctgaagaagccaaattatttgtcaaaaac
gcgccattccgggcattggtgataaaagcgactggtctggcggcaggtaaaggggtcgtg
gtagcagcctctgaggacgaagcatgttttgcaattgacgagatgcttgttgacaagaaa
ttcggcgcagccggagagacaatcgtcgttgaagagctgctcgaaggagaagaagtttcc
atgttagcgttcaccgacggcaaaaccttcaaaatgatgccaccgactcaagaccacaaa
agaatattcgacggtgacctgggtcccaacaccggtggaatgggcgcttacggcccctgt
catctgctgactccagaggaccaagaaatcgtcaggaaagttctagaatcagcgattcgc
gggttccaggatgataaacttccatacgtgggcgttctgtacgccgggctgatgttgacc
aagtctgggcccaaagttctggagttcaattgtcggtttggtgatccagagactcaaata
atcatgcccttgttggattctgatctctttttgataatgaagtcatgttgtcaaggtaat
ttatcttctctgaatatcaactggcacgcggataagtttgccgttggagtgattctggca
tctcgtggctacccagcttcttcctcaaagggccaggtgataaccaacatcagttccata
gaatcatgtccaaaccactttgtcttccacagcggaacggctttgtccaacggcgaaata
gtaaccaacggtggaagagtcctaataacaacttgcatatcttcttctctggaatccgca
gcagcaaaagcaaccattgcagccagagaaatttctttcgacggcaagcagttccgaaaa
gacatcgcgcacaaaggaatcgcttcgtcgatcctaaagtctgggactttgtcctacaag
agcagcggagttgatatcgaagctggcgattccttagtagggcgaataaagtctctagtt
tcgggaacaaagacttcaggagtgttggggtccatcggaggattcggaggactttttgac
actcgcgcagcggggtttgtagatcctattctggtgagcggaaccgatggagttgggact
aagctgaaaatcgctattgaggcgggtaagcatcaaacagttgggatagacttggtagcg
atgtgcgtcaatgacgtcctagcacatggagcccagccgcttttcttccttgactacttc
gcttgtggtcatctggatgttaatgtagccgctgaagtggtcagtggcattgttgaaggc
tgcaagcgagctggctgttcgctgattggcggtgaaactgctgaaatgccggatatgtat
tctacaggagattatgatcttgcaggattcgctgttggagctgttgagaggggaaattta
ctccccagaagcgaagaaataggtgaaggtgatgtagttatcgggttgccttcttcggga
gttcacagcaacggattcagtttggtgagaaagattcttaagttaaatggaatttgcttg
aatgatactgcgccgttttcaacacaaacttttgctgaggagctgctggaaccaacaaga
atttacacgcgtaatgttgttgaggctctgaaggccaaggttgttaaagcgtttgctcat
attacgggcggaggattggtggaaaatgtcccgagagttttgccccctgggctggcggtt
gttcttgatgctgagaaatggaagattcctaaaatttttggctggttggcaactgctggt
ggagtaaatgaagcagagatgctgaggacttttaactgcggaattggaggagttattgtt
tgtgctaaacagcatcaggatagagttttaaagctgctggaagctgaagatgcggttgtt
gttgggtccgtggtgaagaaaatcgacaagccgactgtggtggtaaattttttacgcgct
attgaaagcgaaatgcgtcggtatgtgccgatgttgatggagagactggtctcaccgtgt
aagaaggtgggggttcttatttctggcagcggaactaaccttcaagcgcttattgacgct
actagagaccctgcggagagaatgtgtgcagaaatagttcttgttctgtcgaacaagccc
ggagtcgagggactggaacgggctaaacgggctggcatccccacgagcgttattaagcac
gcggattacaagacacgcgaagagtttgatgaaactatggatcaggagttgagcgctaag
ggagtggaaatagtttgtcttgcgggatttatgaggattttgtcggagaaatttgttaga
aagtggaaaggcgctttgcttaatgttcatccttcattgctaccagctttcaagggagct
aatgctcataaagatgttttagagatgggcgtcagagttactgggtgcactgttcacttt
gttgaggttgaaattgattccggagcaataatcgaacaggaagcagtacctgttttaccg
gatgacacggttcaaactcttcaagaaagggtcaaagtcgctgaacatagaacttatccc
aaggcattgcaataccttgcaacaggtcgtattgggttggatgcaaatggcaaaatttat
tggaactattaa

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