Salmo salar (Atlantic salmon): 106575120
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Entry
106575120 CDS
T04363
Symbol
gart, PUR2
Name
(RefSeq) phosphoribosylglycinamide formyltransferase, phosphoribosylglycinamide synthetase, phosphoribosylaminoimidazole synthetase
KO
K11787
phosphoribosylamine--glycine ligase / phosphoribosylglycinamide formyltransferase / phosphoribosylformylglycinamidine cyclo-ligase [EC:
6.3.4.13
2.1.2.2
6.3.3.1
]
Organism
sasa
Salmo salar (Atlantic salmon)
Pathway
sasa00230
Purine metabolism
sasa00670
One carbon pool by folate
sasa01100
Metabolic pathways
Module
sasa_M00048
De novo purine biosynthesis, PRPP + glutamine => IMP
Brite
KEGG Orthology (KO) [BR:
sasa00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
106575120 (gart)
09108 Metabolism of cofactors and vitamins
00670 One carbon pool by folate
106575120 (gart)
Enzymes [BR:
sasa01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.2 Hydroxymethyl-, formyl- and related transferases
2.1.2.2 phosphoribosylglycinamide formyltransferase 1
106575120 (gart)
6. Ligases
6.3 Forming carbon-nitrogen bonds
6.3.3 Cyclo-ligases
6.3.3.1 phosphoribosylformylglycinamidine cyclo-ligase
106575120 (gart)
6.3.4 Other carbon-nitrogen ligases
6.3.4.13 phosphoribosylamine---glycine ligase
106575120 (gart)
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Gene cluster
GFIT
Motif
Pfam:
GARS_A
Formyl_trans_N
GARS_N
AIRS_C
GARS_C
AIRS
ATP-grasp
ATP-grasp_3
CPSase_L_D2
RimK
ATP-grasp_4
Dala_Dala_lig_C
ATP-grasp_2
Motif
Other DBs
NCBI-GeneID:
106575120
NCBI-ProteinID:
XP_014006810
UniProt:
A0A1S3MUM9
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Position
ssa17:2943015..2976729
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AA seq
1020 aa
AA seq
DB search
MAVRLLVIGSGGREHTLAWKLAQSPHIQQVLVAPGNAGTANCGKISNSEVSVSNHSILAQ
FCKEHSVGLVVVGPEVPLAAGMVDDLQAAGVPCFGPSAKAAQLEANKSFSKAFMDRHGIP
TANWCSFTDPQEACSYIRTASFPALVVKASGLAAGKGVIVAKDQEEACQAVLDIMKDKTF
GSAGETVVVEELLEGEEVSCLCFSDGCSVSPMPPAQDHKRLQDGDLGPNTGGMGAYCPTP
QVSQELLQQIRETVLQKTVDGMKEEGTPYVGVLYAGLMLTKQGPKVLEFNCRFGDPECQV
LMPLLKSDLYEVLQSTLEGKLASSAPEWHQDSSAVTVVMASPGYPGSYKKGVAITGLSQV
EETGVQVFHAGTSLKEGHVVSSGGRVLTVTAVRSSLEMAVHAANRGVAAVGFPGAVYRRD
IGHRAIAHLTQHRGLTYKDSGVDIATGNRLVDMIKPFAKATSRSGCNAELGGFAGLFDLK
AAGFIDPILVSGTDGVGTKLKIAQACQQHSTLGQDLVAMCVNDVLAQGAEPLFFLDYFSC
GRLDVGVASTVIRGVAEACGLAGCALLGGETAEMPGVYGPGEYDLAGFCVGAVERGALLP
RLGDICEGDLLIGVASSGVHSNGFSLVRKVLERAGVTYSSPAPFGKPGQTVGEVLLTPTK
IYSRLLLPILRSGAIKAYAHITGGGLLENIPRVLPQELSVDLDASRWIIPPVFSWLQEEG
GLCEEEMGRTFNCGLGAVLVVAFPDAQRVLRQLQAHEDAWIVGSLAHKQPGAEPVVIRNL
KHSLRLGPSPCVVDLGPMQNGASQGDSSSTVPRKRTRVGVLISGTGTNLQALMEQAKRTS
SSAEIVVVISNQPGVLGLKRASLSGIQTRVVDHKLYGSRAEFDGTIDHVLEEFDVEVVCL
AGFMRILTGSFVRKWNGKLLNIHPSLLPSFKGVNAQKQALQAGARVTGCTVHFVAEEVDA
GAIIAQEAVPVLMNDTEESLSDRIREAEHRAFPAALELVAGGGVRLGDDGRVIWNPNAQG
NT seq
3063 nt
NT seq
+upstream
nt +downstream
nt
atggcagtgcggttgctggtgattggtagtggtgggcgggaacataccctggcatggaag
ctggcacagtcaccacacatccagcaggtcctggtggcgccagggaacgctggcaccgcc
aactgtggaaagatctccaactctgaggtgtctgtgagtaaccactccatcctggctcag
ttctgtaaggagcatagtgtggggctggtggtggtagggcccgaagtgcctctggcagca
ggcatggtagatgacctgcaagcggcaggggttccgtgtttcggcccctcggcgaaggct
gcccagctggaggccaataagagtttctccaaggcctttatggaccgtcacggcatccct
acagccaactggtgctccttcaccgacccccaggaggcctgcagctacatccgcacggcc
agttttcctgctctggtggtgaaagccagtggccttgctgcagggaagggtgtcattgtg
gccaaggaccaggaggaggcctgccaggctgtgctggacataatgaaggacaaaacgttc
ggctctgccggggagactgtggtggtggaggaactgctggagggagaagaagtgtcttgt
ctgtgtttcagtgatggctgcagtgtgtcccccatgcccccggcccaggaccacaaacgc
ctgcaggacggggacctgggccccaacacgggcggcatgggggcctactgccccacccct
caggtgtctcaggagcttttgcagcagatcagagagactgtcctccagaagactgtggat
ggcatgaaggaggagggaaccccctatgtgggtgtgctgtatgctgggctgatgttgacc
aagcaggggccgaaggtcctggagttcaactgtcgctttggcgacccagagtgtcaggtg
ctgatgcccttgctgaagagtgacctgtatgaggtgcttcagagcaccctggaggggaag
ttggcatccagtgcacctgagtggcaccaggacagctctgcagttaccgtggtcatggcc
agccctggctaccccggctcctataagaaaggtgtcgcaatcacaggtctgtctcaggtg
gaggagacgggggtgcaggtgttccacgccgggacgtcactaaaggaagggcatgttgtt
tccagtggggggcgtgtcctcactgtcaccgctgttaggtcgtccctggagatggccgtg
cacgcagccaatcggggcgtggccgctgtggggttcccgggagcagtgtaccgacgtgac
atcggtcaccgagccatcgcccacctcacccagcacagaggcttaacttataaggacagc
ggagtggacatcgccacgggaaatcggctggtagacatgatcaagccatttgccaaggcc
acctctcgctcagggtgtaacgctgagctgggaggcttcgccggcctctttgatctcaaa
gctgcaggcttcatcgaccccatcctggtgtctgggacagacggagtagggaccaagctc
aagattgcccaggcatgccagcagcatagcaccctgggacaggacctggtggccatgtgt
gtcaacgacgtgctggcccagggggcggagcctctcttcttcctggactacttctcctgt
ggccgtctggatgtgggcgtggcctccactgtgatcaggggcgtggccgaggcctgtggg
ttggcgggctgcgctctgctgggcggcgagactgcggagatgcccggcgtgtacggcccc
ggagagtacgacctggcagggttctgtgttggggcagtagagaggggcgccctgctaccc
aggctgggggacatctgcgagggagacctgctcattggggtggcctcctctggggtgcac
agcaacggattcagcctggttcggaaggtcctggagagggcaggagtcacctacagctcc
cctgcacctttcgggaaacctggacaaaccgtgggcgaggttctcctgacgcccactaag
atctacagccgcctgctcctgccaatccttcgcagcggcgccatcaaggcctacgcccac
atcactgggggcggcctattggagaacatcccccgagtgctgcctcaggaactgtccgtt
gacctggacgcctcccgttggatcatccctcctgtgttctcatggctccaggaggagggg
ggcttgtgtgaggaggagatggggcgcaccttcaactgtggccttggggccgtgctggtg
gtggcctttccggacgcccagagggttctgaggcagctccaagcccacgaggatgcgtgg
attgtgggctcgctggcccacaagcagcctggggccgagccggtggtgatcaggaacctg
aagcacagcctgcgtttaggcccctctccctgtgtagtagacctggggcccatgcagaac
ggagcatctcaaggggacagcagtagcaccgtcccccgcaagaggaccagggtgggcgtc
ctcatctcaggcacaggcaccaacctgcaggcactgatggagcaggccaagagaacgtcc
agctcagcagagatcgtggtggtgatctccaaccagccgggggtcttgggcctcaaaagg
gcctctctgtctggcattcagacacgggtcgttgaccataagctgtacggtagccgggca
gagtttgacggcaccattgaccacgtgctggaggaatttgatgtggaggtggtgtgtctc
gccggcttcatgaggatcctcacagggtccttcgtcaggaaatggaacggaaaactgctg
aatatccatccgtccctgctgccctcattcaagggggtgaatgcccagaagcaggctctg
caggcgggggcacgggtcactggctgcactgtccactttgtggctgaagaggttgatgcc
ggggccatcattgctcaggaggcggtgccggtgttgatgaatgatactgaggagagccta
tcagatcgtatccgggaggcggaacaccgggccttccctgccgccctggagctggtggcc
gggggcggcgtgaggctgggggatgacggacgcgtcatctggaaccccaacgcacagggc
taa
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