Entry
Name
(RefSeq) gibberellin 20 oxidase 1-D-like
KO
Organism
csin Camellia sinensis (tea plant)
Pathway
csin01110 Biosynthesis of secondary metabolites
Module
csin_M00928 Gibberellin A4/A1 biosynthesis, GA12/GA53 => GA4/GA1
Brite
KEGG Orthology (KO) [BR:csin00001 ]
09100 Metabolism
09109 Metabolism of terpenoids and polyketides
00904 Diterpenoid biosynthesis
114299186
Enzymes [BR:csin01000 ]
1. Oxidoreductases
1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
1.14.11 With 2-oxoglutarate as one donor, and incorporation of one atom of oxygen into each donor
1.14.11.12 gibberellin-44 dioxygenase
114299186
BRITE hierarchy
SSDB
Ortholog Paralog GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
Unknown
AA seq
561 aa AA seq DB search
MEVMMRQLQLTIEAMQRDFARQAEVTTRQTEVTDQQVELIANLQQQQQPQQAVASASHPP
PPMVPIPGDTANAQENMDTPAGPDLGDVQIGWFDMNGSTDNTGWLSDELDVDEGSQPKQE
QLGIGTSTTVGTVENKGKLPESTGTKNSAQELGSLCIADTELEAALKWFDQKRTEIDQKA
RKAQGPAGIDCVVNTGIIMTEPDNYRSINIDASLLKHELNIPPQFIWPDHEKPSLHEPPS
LFVPPIDLGAFISGDPLSVSTAIQLVDEACKKHGFFLVINHGVSKELISEAQKNMDLFFD
MPLKEKQRAQRKVGEYHGYASSFTGRYSSRLPWKETLSFRYCDDGGSSNVVGEYLVGTMG
EDFRQFGRIYQDYCEAMNTLSLRIMELLGMSLGVGPTYLREFFEGNESIMRLNNYPPCLR
AHDTLGTGPHRDPNSLTILHQDNVGGLQVFVDQQWHSILPNSQAFVVNVGDTFMALSNGI
YKSCLHRAVVNKQVPRKSLTFFLSPNMDKVVSPPNGLVNSHNPRIYPDFTWPTLLEFTQK
HYRVDIDTIDVFSNWLQCKTN
NT seq
1686 nt NT seq +upstream nt +downstream nt
atggaggttatgatgcgtcaacttcaactgaccatcgaggccatgcaacgggactttgct
cgccaagcagaagttaccactcgccaaacagaggtcacagaccagcaagttgagttaatt
gccaatcttcaacagcagcagcaaccacaacaagcagtagcttctgcttcgcacccaccc
ccgcctatggttccaatacccggggatacagctaatgcccaggagaatatggacactcca
gcagggccagatctgggagatgtacagatcggctggtttgatatgaatggatcaacggat
aatacaggctggcttagtgatgagctagatgttgatgaggggtctcaaccgaagcaggaa
caattaggaataggaacgtctacaacggtcggaacggtcgagaacaaggggaagttgccg
gagagcaccggtactaagaattctgctcaagaattgggtagcttgtgtatagctgataca
gaattggaggctgcgctaaagtggttcgaccagaaaagaactgagattgatcagaaggct
agaaaagcccaaggccccgctgggattgattgtgttgtcaacacaggaataattatgaca
gaaccggacaattatagaagtataaacatagacgcatctcttctcaaacacgaactcaac
atacctccacaattcatatggcccgaccatgaaaaacccagcctccatgagccaccatca
ctcttcgttccacctattgacttgggagccttcatctccggtgaccccctatccgtctca
acagctattcaacttgtcgatgaggcttgcaagaaacatggcttcttcttagtcataaac
catggagttagcaaagagcttatcagtgaagctcagaagaacatggacttgttttttgat
atgccattgaaagagaaacagagagctcaaagaaaagttggggaatatcatgggtatgct
agtagctttactggtaggtactcttccaggcttccatggaaagaaactctttcttttaga
tattgcgatgacggtggatcatcaaacgtggttggagagtacttggttggcacaatgggt
gaagattttagacaatttggaaggatataccaagattattgtgaagcaatgaacactctg
tcacttaggatcatggaactattggggatgagcctaggagtgggcccaacctatttaaga
gaattctttgaaggaaatgagtcaataatgagactaaacaactaccccccttgtcttaga
gctcatgatactcttggaactggtccccatcgtgatccaaactcgctcactatccttcat
caagacaatgttggtgggcttcaagtgtttgttgatcaacaatggcactccattcttccc
aattcacaagcttttgttgtcaacgttggagacacattcatggctctatcaaatggaatt
tacaagagttgcttgcatagagcagtggtaaacaaacaagttccaaggaagtctctgacc
ttctttttgtctccaaacatggacaaagtggtgagtccacctaatggattggtcaatagt
cataatccaaggatatatccagacttcacttggccaactcttcttgaattcactcagaag
cattacagagttgacatagataccattgatgtcttctcaaattggcttcaatgcaaaacc
aactga