Entry
Name
(RefSeq) riboflavin biosynthesis protein PYRR, chloroplastic
KO
K11752 diaminohydroxyphosphoribosylaminopyrimidine deaminase / 5-amino-6-(5-phosphoribosylamino)uracil reductase [EC:3.5.4.26 1.1.1.193 ]
Organism
mdm Malus domestica (apple)
Pathway
mdm01110 Biosynthesis of secondary metabolites
Module
mdm_M00125 Riboflavin biosynthesis, plants and bacteria, GTP => riboflavin/FMN/FAD
Brite
KEGG Orthology (KO) [BR:mdm00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00740 Riboflavin metabolism
103451152
Enzymes [BR:mdm01000 ]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.1 With NAD+ or NADP+ as acceptor
1.1.1.193 5-amino-6-(5-phosphoribosylamino)uracil reductase
103451152
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.4 In cyclic amidines
3.5.4.26 diaminohydroxyphosphoribosylaminopyrimidine deaminase
103451152
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SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
12:join(31410143..31410520,31410620..31410754,31410963..31411062,31411187..31411312,31411401..31411714,31411942..31412061,31412180..31412425,31412503..31412628,31412994..31413236)
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AA seq
595 aa AA seq DB search
MLPMAALSLPPVRVYCSGGAATPNSSISNNNLLGNHALDAAHIRRAAELADGSAGFTSPH
PNFGCVIASKSGKVAGEGFLYAQGTKPAEVLAVDAAGDFSRRATAYLNMEPGDCHGDHSA
VSALVQAGIERVVIGLRHPLQHLRGNAIRALRSQGLQVDVLGEDLNSKLIEEARKSCLLV
NAPLICRAASRVPFSVLKYAMTLDGKIAASSGHAAWISSKTSRNRVFELRGRSDAVIVGG
NTVRKDNPRLTARHGGGHMPMRIVMSQTLDLPEEAHLWDTSDVSTIVATQRGARRHFQKH
LASKGIEVVEFDILNPREVMEYFHDRGYLSLLWECGGTLAAAAISSGVIHKVFAFVAPKI
IGGKNAPSPVGELGMVEMTQAFDLIDVCYEQVGPDMLISGFLQPIPDVTPVIPSVDETFE
IDPTVTPYESRIIFFYKTWDPYGAFSNFSPHQIKMPDDSGDYEPWLSVEHYYQAQKFVGV
DDPVAQDCVENIKSARSPEEAARIGRSMQRKRPDLVRCEWESVKIEVMYRALKCKFSIYP
HLNAMLLSSAGCVLVEASPHDLFWGGGRDGEGLNYLGRLLMQLRSEFLGESPTSS
NT seq
1788 nt NT seq +upstream nt +downstream nt
atgcttccaatggcggcgttatctttgccaccagtgagagtctactgcagcggcggcgcc
gccacacccaacagcagtattagtaacaacaatttactcggcaaccacgcgctcgatgcc
gcccacatccgacgagccgccgagctggccgacggatccgccggattcacctctccccac
ccaaacttcgggtgcgtcattgcctccaaatccgggaaagtcgccggcgagggattcctc
tacgcccagggcaccaagcccgccgaggtccttgccgtcgacgcagctggcgatttctca
cgccgcgccactgcttatctcaacatggagcccggtgattgccacggtgaccactctgcc
gtctccgccctcgttcaggcagggattgaaagggtggtgattgggctgaggcatccattg
cagcatttgagagggaatgccattcgggctttgagaagtcaaggcttgcaagttgatgtt
cttggtgaggacctcaacagtaaactcattgaggaagcacgaaaatcatgcctccttgtc
aatgctccattaatttgtagagctgcttctcgagtccccttctccgttctcaagtatgcc
atgactcttgatggaaaaattgctgctagcagcggacatgcagcatggatcagcagcaaa
acgtctagaaatcgagtgtttgaactgcggggtagaagtgatgcagtcattgtaggagga
aatacagtgcgcaaggacaatccaagactaactgcaagacatggtggtggacatatgcct
atgcggattgtaatgtcacagactcttgatctcccagaggaagcacacctttgggatacc
tctgatgtatctactatagttgcaacacagaggggtgcaagaaggcatttccagaaacat
cttgcatcaaaaggaattgaagtggtggagtttgacatcttaaaccccagagaagtaatg
gaatacttccatgatcgtggatatctttcacttttgtgggagtgtggggggacattagct
gcagctgctatttcatccggagtaatacataaggtgttcgcatttgttgctcctaaaatt
attggtggaaagaatgcgccatcccctgtgggtgaactcgggatggttgaaatgacacaa
gcctttgacctaattgatgtctgctatgaacaggttggacctgatatgcttataagtgga
tttcttcaacccataccagatgtgacccctgttattccatcagttgatgaaacatttgaa
attgatccaaccgtgactccatatgaatcaaggatcatattcttttacaaaacatgggac
ccatacggcgctttctcaaatttttcgcctcaccaaattaagatgccagatgacagtggt
gattatgaaccttggttgagtgtcgagcattactatcaggctcagaagtttgttggggtg
gatgatcctgtggcacaagattgtgttgaaaatatcaagtctgccagaagtccggaagag
gcagcacggataggaaggtcaatgcagaggaagcgtcctgatttggtaagatgtgagtgg
gaaagtgtaaagattgaagtgatgtatagggcactaaaatgcaagttctcgatataccca
catttgaatgcaatgttgctgtcaagtgctggatgtgttcttgttgaagcatcaccgcat
gatcttttctggggaggaggtcgggatggagaagggctaaattatctgggcaggctttta
atgcagttgagatcagagtttcttggtgagtctcctacgtccagttag