Entry
Name
(RefSeq) alternative NAD(P)H-ubiquinone oxidoreductase C1, chloroplastic/mitochondrial
KO
Organism
rcn Rosa chinensis (China rose)
Pathway
rcn00130 Ubiquinone and other terpenoid-quinone biosynthesis
rcn01110 Biosynthesis of secondary metabolites
Module
rcn_M00932 Phylloquinone biosynthesis, chorismate (+ phytyl-PP) => phylloquinol
Brite
KEGG Orthology (KO) [BR:rcn00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00130 Ubiquinone and other terpenoid-quinone biosynthesis
112176025
Enzymes [BR:rcn01000 ]
1. Oxidoreductases
1.6 Acting on NADH or NADPH
1.6.5 With a quinone or similar compound as acceptor
1.6.5.12 demethylphylloquinone reductase
112176025
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
7:complement(19773790..19776421)
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AA seq
543 aa AA seq DB search
MSTTAFAASATLLRLNCEAKHQARLFPDFSRRGRSKISKISLFASSRRKSFQFVVASSAS
GENGGVAEIEAESAPRYYSWPDEKKPRVCILGGGFGGLYTALRLESLVWPDDKKPQVLLV
DQSEHFVFKPMLYELLSGEVDAWEIAPRFSDLLANTNVLFFQDKVKLLYPSDHLVINGPA
KSSAGGSVLLESGLLIEYDWLVLSLGAEAKLDVVPGASEFALPFSTLEDARKVDLRLREL
ERRKFSKESLIHVVVVGCGYAGVELAATVSERLQDRGIVQAINVENTICPNAPPGNREAA
TKVLSSRKVELLLGYFVRCIRQVVDAKASEKPTKSIGVEGIAAEHDFGKYILELQPTEKG
LQSQTIEADLVLWTVGSKSLLPQLEPSNRRSALPLNGRGQAETDETLRVNGHPRIFAVGD
SSALRESNGRLLPATAQVAFQQADFAGWNLWAAINNRPLLPFRFQNLGEMITLGRNDAAI
SPSFIEGLTLDGPLGHTARKLAYLIRLPTDEHRLKVGISWLTKSAIDSVASLQSTLTKVI
SNS
NT seq
1632 nt NT seq +upstream nt +downstream nt
atgtcaacgactgcatttgctgcttcagcaactcttttacggctcaattgtgaggcaaag
caccaggctaggttatttcctgatttctcgagaagaggccggtctaagatatctaagata
tcgctatttgctagttcacgaaggaaaagctttcagtttgttgttgcttcaagtgcttct
ggggagaatggaggtgttgcggagatagaagctgaaagtgcccctcggtattattcttgg
ccggatgagaagaaaccaagggtgtgtatactaggtggtgggtttggaggtttgtatact
gctctaagactagaatcattggtatggcctgatgacaagaagcctcaggtgctcctggtt
gaccagtctgaacactttgtttttaagccaatgctgtatgagcttctgtccggagaagtt
gatgcgtgggagatagcacctcgcttctcagacctgctggcaaatacaaatgtgctgttt
tttcaagacaaggtcaaactcttgtacccctctgatcatttggtaatcaatggacctgca
aaatcaagtgctggaggaagtgtacttcttgagagtggtcttcttattgaatatgactgg
ctggttctttctctgggtgctgaagctaagcttgatgttgtaccaggagcgtcagagttt
gcattgccattctccactctggaggatgctcgcaaggttgatcttaggctaagagaattg
gagaggagaaagttcagcaaggaatctctaatacatgtggtggttgttggttgtggttac
gctggagttgagttagctgccacagtttcggagagactgcaggacagaggtatagtacaa
gcaattaatgtagaaaacacaatctgcccaaatgccccgcctggaaatagggaagctgcg
actaaagttctctcatcaaggaaagttgaacttctgttgggttactttgttcgttgtatt
cgtcaagttgttgatgcgaaagcttcagaaaaaccgacaaagagcataggagttgaaggc
attgctgcagaacatgattttgggaaatatattttggaacttcaacctactgaaaaggga
ttacaaagtcaaactattgaagcagatcttgtcttatggactgttgggtctaaatctctt
cttcctcagctggaacccagtaacaggcgcagtgcgcttcccttaaatggcaggggccaa
gcagaaacagatgaaacacttcgtgttaatggtcacccacgcatatttgcagttggtgat
tcttctgctctaagggaatcaaatggaaggcttcttcctgccactgcgcaggtcgctttt
cagcaagcagactttgctggttggaatctgtgggctgcaataaacaaccgcccacttttg
cctttcaggtttcagaatttaggggaaatgattactttggggagaaatgatgctgccatt
tctccaagtttcatcgaggggttaacgttagatggtcctttgggtcataccgcgaggaaa
ttagcctacttgattagattaccaactgatgagcataggcttaaagtagggatcagttgg
cttacaaaatctgctatagattctgttgcatctctacagagcaccctgacgaaggttatt
tcaaactcatag