Annotations

Type Name Description Pathways
KEGG reaction
R04463 5'-Phosphoribosylformylglycinamide:L-glutamine amido-ligase (ADP-forming); ATP + 5'-Phosphoribosyl-N-formylglycinamide + L-Glutamine + H2O <=> ADP + Orthophosphate + 2-(Formamido)-N1-(5'-phosphoribosyl)acetamidine + L-Glutamate kornec00230kornec01100kornec01110
Gene Product
phosphoribosylformylglycinamidine synthase
Ortholog
N0.HOG0001441 phosphoribosylformylglycinamidine synthase subunit PurL
KEGG gene
K01952 PFAS, purL; phosphoribosylformylglycinamidine synthase [EC:6.3.5.3] kornec00230kornec01100kornec01110
Eggnog Protein
EP:purL
Eggnog Ortholog
EO:COG0046
Eggnog Description
ED:Part of the phosphoribosylformylglycinamidine synthase complex involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. The FGAM synthase complex is composed of three subunits. PurQ produces an ammonia molecule by converting glutamine to glutamate. PurL transfers the ammonia molecule to FGAR to form FGAM in an ATP-dependent manner. PurS interacts with PurQ and PurL and is thought to assist in the transfer of the ammonia molecule from PurQ to PurL
EC Number
EC:6.3.5.3 phosphoribosylformylglycinamidine synthase; phosphoribosylformylglycinamidine synthetase; formylglycinamide ribonucleotide amidotransferase; phosphoribosylformylglycineamidine synthetase; FGAM synthetase; FGAR amidotransferase; 5'-phosphoribosylformylglycinamide:L-glutamine amido-ligase (ADP-forming); 2-N-formyl-1-N-(5-phospho-D-ribosyl)glycinamide:L-glutamine amido-ligase (ADP-forming) kornec00230kornec01100kornec01110

Occurs in the following pathway maps:

Pathway Description
kornec00230 Purine metabolism
kornec01100 Metabolic pathways
kornec01110 Biosynthesis of secondary metabolites

Sequences

Nucleotide sequence (GC-content: 42.0 %):

ATGGATAAACGTATTTTCGTTGAGAAAAAAGCTGATTTTCGTGTGAAATCTCGCTCTTTATTAAAAGAATTACAGCATAATATTCAGTTGAAAACCTTGAATGATCTTCGTATTGTACAAGTTTACGATGTCTTTAATTTGGCAGAGGATTTGTTTGCCCGTGCGGAAAAATATATCTTTTCTGAACAAGTGACCGATACTGTTTTGGATGAAGCTACAGTTAAGACTGACCTTGAGAAGTATGCTTTCTTTGCTATCGAAAGCTTGCCTGGTCAATTTGATCAACGTGCAGCATCTTCACAAGAAGCTTTGCTTTTGCTTGGTAGCTCAAGTGATGTAACGGTTAATACTGCTCAATTGTACTTGGTTAACAAGGACATTGCTGCTAATGAATTGGAAGCTGTTAAAAATTATCTATTGAACCCAGTGGACTCTCGTTTCAAAGATATCACTGTTGGTATTGCTAAACAGGATTTCTCTGAGTCTGACAAAACGATTCCAAACTTGGATTTCTTTGAAACTTATACAGCAGAAGATTTTGCACAGTATAAGGCAGATCAAGGATTGGCCATGGAAGTGGATGACCTGCTCTTCATTCAAGATTACTTCAAGTCAATTGGACGTGTGCCAACTGAGACTGAACTTAAGGTTTTGGATACTTACTGGTCTGACCACTGCCGCCACACAACTTTCGAGACTGGGTTGAAAAACATCGACTTCTCAGCTTCTAAATTCCAAAAACAATTGCAAGCAACTTATGACAAATATATTGCCATGCGTGATGAGTTGGGACGTGCAGAAAAGCCTCAAACCTTAATGGATATGGCGACTATTTTTGGTCGTTATGAGCGTGCCAATGGCCGTTTGGATGACATGGAAGTTTCTGACGAAATCAATGCCTGCTCAGTTGAAATTGAAGTAGATGTCAATGGTGTCAAAGAACCATGGCTTCTTATGTTCAAGAACGAAACTCATAACCACCCAACGGAAATCGAACCATTTGGTGGAGCGGCTACTTGTATCGGTGGTGCCATTCGTGACCCATTGTCAGGTCGTTCATACGTTTACCAAGCTATGCGTATTTCAGGTGCCGGTGATATTACAACACCAATCGCTGAAACACGTGCTGGAAAATTGCCACAACAAGTCATTTCTAAAAAAGCGGCTCATGGTTATTCTTCATATGGTAACCAAATTGGTCTTGCAACAACTTATGTTCGTGAATACTTCCACCCAGGTTTCGTTGCCAAGCGTATGGAGCTAGGTGCAGTTGTCGGTGCAGCTCCTAAGGAGAATGTTGTCCGTGAAAAACCTGAAGCTGGAGATGTGGTTATCTTGCTCGGTGGTAAGACTGGACGCGACGGTATCGGTGGTGCGACAGGTTCTTCAAAAGTTCAAACGGTTGAATCAGTTGAAACAGCTGGTGCTGAGGTTCAAAAAGGTAATGCTATCGAAGAACGTAAGATTCAACGTCTTTTCCGCAATGGTGAAGTAACACGTCTTATCAAGAAATCCAATGACTTTGGTGCTGGTGGTGTCTGTGTGGCTATCGGTGAATTGGCAGATGGTCTTGAAATTGATCTAGACAAAGTGCCATTGAAATACCAAGGTTTGAACGGTACCGAAATTGCCATCTCTGAATCTCAAGAACGTATGGCTGTGGTGGTTCGTCCAGAAGATGTAGATATCTTCGTTGCTGAATGTAACAAAGAAAATATTGATGCAGTTGTCGTTGCAACCGTGACTGAAAAACCAAATCTCGTCATGCACTGGAATGGTAAAACAATTGTTGATTTGGAACGTCGTTTCCTTGATACAAATGGTGTGCGTACAGTAGTAGATGTTAAGGTGGTTGACAAGGATGTCAAGCTTCCAGAAGAACGCAAAACCTCTGCTGAAACCCTTGAAGCAGATACGCTTGAAGTTTTGGCTGACCTTAACCATGCAAGTCAAAAAGGTTTACAAACTATGTTTGATAGCTCGGTTGGTCGTTCAACAGTCAATCACCCACTTGGTGGTCGATACCAAATTACTCCAACTGAAGCTTCTGTTCAGAAATTGCCAGTCCAATATGGCGTGACAACAACTGCCTCTGTCATAGCCCAAGGATTTAACCCATACATCGCAGAATGGTCTCCATATCATGGTGCTGCATATGCAGTCATCGAAGCAACAGCTCGTTTGGTTGCTGTTGGTGCAAATTGGTCTAAGGCTCGTTTCTCTTATCAAGAATACTTCGAGCGTATGGATAAAAAAGCAGAGCGTTTTGGTCAACCAGTATCAGCTCTTCTTGGATCAATCGAAGCTCAGATTCAACTTGGTTTGCCATCTATTGGTGGTAAGGACTCTATGTCAGGCACCTTTGAAGAATTGACAGTACCACCAACCTTGGTTGCTTTTGGGGTGACAACAGCAGACAGTCGTAAGGTCCTTTCTCCAGAATTTAAGGCTGCTGGTGAAAATATCTACTACATCCCAGGTCAAGCTTTGGCCCAAGAGATTGATTTTGATCTCATCAAGTCTAACTTTGCTCAGTTTGAAGCTATCCAAGCTGATCACAAAGTGACAGCTGCATCAGCTGTCAAATATGGTGGTGTCATTGAAGCTCTTGCACTTGCAACGTTTGGGAACCATATCGGGGCGACTGTAACCCTTGAAAATCTTGAGACTGCCTTAACAGCTCAATTGGGAGGATTCATCTTCACATCTCCGGAAGAGATTGCAAGTGTTGGCAAGATTGGACAAACAGTAGCTGACTTTACACTTGCTGTCAACGGTGTAACGCTTGATGGACATAAACTTGACAGTGCCTTTCAAGGTAAATTGGAAGAGGTTTACCCAACTGAATTTGCACAAGCAACTGAGTTAGAAGAAGTACCTGCTGTGACGTCAGATACTGTTATAAAAGCTAAAGAAGTAGTTGAGAAACCAGTGGTTTACATCCCAGTATTCCCAGGTACTAACTCTGAGTATGACTCTGCTAAGGCCTTTGAAAAAGAAGGTGCCAAAGTCAACTTAGTACCATTTGTAACATTGAATGAAGAAGCGATTGTCAAGTCTGTTGTCACCATGGTTGATAATATTGAAAAAGCTAACATTATCTTCCTTGCAGGTGGCTTCTCAGCAGCGGATGAACCAGATGGAGCAGCTAAATTTATCGTTAACATCTTGCTCAATGAAAAAGTACGTGCAGCTATTGATAGCTTCATCGAACGTGGTGGTTTAATCATCGGTATCTGTAACGGGTTCCAAGCTCTTGTCAAATCAGGTCTCCTTCCATACGGTAACTTTGAAGATGCAAGCAGTACTAGTCCAACCCTCTTCTACAATGATGCCAACCAACACGTGGCTAAGATGGTTGAAACACGTATTGCCAATACTAACTCACCTTGGCTTGCTGGAGTGAAAGTTGGTGACATCCATACCATCCCAGTATCACACGGTGAAGGTAAATTTGTCGTGACGACTGAAGAATTTGCGGAGCTTCGCGATAATGGTCAAATCTTTAGCCAATATGTTGACTTCGAAGGCAAACCTAGCATGGATTCTAAATATAATCCAAATGGTTCTGTCAATGCTATTGAAGGTATCACAAGCAAGAACGGTCAAATTATTGGTAAGATGGGACACTCAGAACGTTTCGAAGATGGTCTCTTCAAAAATATTCCTGGAAATAAAGAACAGCACCTCTTTGCGTCAGCGGTTAAATACTTCACTGGAAAATAA

Protein sequence:

MDKRIFVEKKADFRVKSRSLLKELQHNIQLKTLNDLRIVQVYDVFNLAEDLFARAEKYIFSEQVTDTVLDEATVKTDLEKYAFFAIESLPGQFDQRAASSQEALLLLGSSSDVTVNTAQLYLVNKDIAANELEAVKNYLLNPVDSRFKDITVGIAKQDFSESDKTIPNLDFFETYTAEDFAQYKADQGLAMEVDDLLFIQDYFKSIGRVPTETELKVLDTYWSDHCRHTTFETGLKNIDFSASKFQKQLQATYDKYIAMRDELGRAEKPQTLMDMATIFGRYERANGRLDDMEVSDEINACSVEIEVDVNGVKEPWLLMFKNETHNHPTEIEPFGGAATCIGGAIRDPLSGRSYVYQAMRISGAGDITTPIAETRAGKLPQQVISKKAAHGYSSYGNQIGLATTYVREYFHPGFVAKRMELGAVVGAAPKENVVREKPEAGDVVILLGGKTGRDGIGGATGSSKVQTVESVETAGAEVQKGNAIEERKIQRLFRNGEVTRLIKKSNDFGAGGVCVAIGELADGLEIDLDKVPLKYQGLNGTEIAISESQERMAVVVRPEDVDIFVAECNKENIDAVVVATVTEKPNLVMHWNGKTIVDLERRFLDTNGVRTVVDVKVVDKDVKLPEERKTSAETLEADTLEVLADLNHASQKGLQTMFDSSVGRSTVNHPLGGRYQITPTEASVQKLPVQYGVTTTASVIAQGFNPYIAEWSPYHGAAYAVIEATARLVAVGANWSKARFSYQEYFERMDKKAERFGQPVSALLGSIEAQIQLGLPSIGGKDSMSGTFEELTVPPTLVAFGVTTADSRKVLSPEFKAAGENIYYIPGQALAQEIDFDLIKSNFAQFEAIQADHKVTAASAVKYGGVIEALALATFGNHIGATVTLENLETALTAQLGGFIFTSPEEIASVGKIGQTVADFTLAVNGVTLDGHKLDSAFQGKLEEVYPTEFAQATELEEVPAVTSDTVIKAKEVVEKPVVYIPVFPGTNSEYDSAKAFEKEGAKVNLVPFVTLNEEAIVKSVVTMVDNIEKANIIFLAGGFSAADEPDGAAKFIVNILLNEKVRAAIDSFIERGGLIIGICNGFQALVKSGLLPYGNFEDASSTSPTLFYNDANQHVAKMVETRIANTNSPWLAGVKVGDIHTIPVSHGEGKFVVTTEEFAELRDNGQIFSQYVDFEGKPSMDSKYNPNGSVNAIEGITSKNGQIIGKMGHSERFEDGLFKNIPGNKEQHLFASAVKYFTGK

GenBank Info

locus_tag - FAM13496-i1-1.1_001512
EC_number - 6.3.5.3
inference - COORDINATES: similar to AA sequence:RefSeq:YP_003445238.1
note - Derived by automated computational analysis using gene prediction method: Protein Homology.
codon_start - 1
transl_table - 11
product - phosphoribosylformylglycinamidine synthase
protein_id - extdb:FAM13496-i1-1.1_001512

Gene Locus

Located on scaffold FAM13496-i1-1_scf22


FAM13496-i1-1.1_001511
FAM13496-i1-1.1_001513