Entry
Name
(RefSeq) external alternative NAD(P)H-ubiquinone oxidoreductase B3, mitochondrial-like isoform X1
KO
Organism
tang Typha angustifolia (narrow-leaf cattail)
Pathway
Brite
KEGG Orthology (KO) [BR:tang00001 ]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
140763252
Enzymes [BR:tang01000 ]
1. Oxidoreductases
1.6 Acting on NADH or NADPH
1.6.5 With a quinone or similar compound as acceptor
1.6.5.9 NADH:quinone reductase (non-electrogenic)
140763252
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
7:join(272781..272875,274487..274757,274976..275182,275309..275559,275762..275978,276119..276223,278299..278571,278685..278806,280489..280608,280718..280805)
Genome browser
AA seq
582 aa AA seq DB search
MVRFSTSFLDRASQAVHRSSAWSKLVVVIAVSSGGGLVAYADAKSDLRLEPSSHRTCRKK
VVVLGTGWAGTSFLKNLDTSLYDVQVVSPRNYFAFTPLLPSVTCGTVEPRSIVEPIRNIM
KKKDGMIKFWEAECYKIDPASRKVHCRSSIGTNLDGNGEFAVDYDYLVIAVGAKPNTFNT
PGVVEHCHFLKEIEDAQRIRRSIMNCFEKASLPNISEEERRKNLHFIIVGGGPTGVEFAA
ELHDFVTEDLAKLYPTVKDLVSISVIEAGGHILTMFDKRITKFAEDKFQRDGIQVKTNFR
VVKVSDNAITMTNSTTGEVSVPYGMAVWSTGIGTRPIISDFMKQVGQGSRRVLATDEWLR
VHGCDDVYALGDCATISQRKVMEDISAIFRVTDKDNSGTLTLKEIKDVLGDICERYPQVE
LYLKSKRLKGFLDLLKDSDGNNVKESKEINIEEFKKALAVVDSQVKMLPATAQVAAQEGD
YLARCFNKMKICAEHPEGPLRIRGPGRHRFHPFQYRHLGQFAPLGGEQTAAQLPGDWISI
GRSTQWLWYSVYASKQVSWRTRMLVVSDWFRRFIFGRDSSCI
NT seq
1749 nt NT seq +upstream nt +downstream nt
atggtgcggttttcgacgtcgttcttggatcgcgcatcacaggcggtccatcgaagctcg
gcgtggtcgaagcttgtggttgtaatcgccgtcagtagcggcggaggtcttgtggcatat
gctgatgcaaaatcagatctgcgtctagaaccttcttctcacagaacttgcaggaaaaag
gtggtggtgcttggaactggttgggctggaacaagtttcttgaaaaatctagatacctct
ttatatgatgttcaagtagtatcacctcgtaactattttgcatttacccctctgctacca
agtgtaacatgtggaacagtggagccacgtagtattgttgaaccaatccgcaatatcatg
aaaaagaaagatggaatgattaaattctgggaagctgagtgctacaagattgatccagca
agcaggaaagttcactgtcgatcaagtatcgggaccaatttggatggcaatggtgaattt
gcagtcgattatgactacttggtcattgcagttggagctaagcctaacaccttcaatacc
cctggtgtggtggagcattgccattttttgaaggaaatagaggatgctcagagaatccgc
agaagcatcatgaattgtttcgaaaaggccagcctcccaaatataagtgaggaggagagg
aggaagaatcttcattttatcattgttggtggtggtccaactggtgtagaatttgctgca
gagttgcatgattttgtcactgaagatttggccaagctgtatcctactgttaaagactta
gtaagcatatcagtaatcgaagctggagggcatattcttaccatgtttgacaaaagaatt
accaagtttgccgaagacaagtttcagagagatggtatacaagtgaaaaccaattttcgg
gtcgtgaaggtctccgataacgccatcacgatgactaattcaacgaccggagaagtttct
gttccctatggcatggctgtgtggtctacaggaattgggacgcgtcctatcatttcggac
ttcatgaaacaagttggtcagggtagcaggcgtgtattagcaactgatgaatggcttagg
gtccatggatgtgacgatgtatacgcacttggtgactgcgcaacgataagccaaagaaag
gtcatggaagacatctctgcaatatttagggtaacagacaaggataattctggaacttta
actttgaaggaaatcaaagatgtcctaggtgatatctgcgagaggtatcctcaggttgaa
ctctatcttaagagtaaacggttgaagggatttttagatctgttgaaggattcagatggc
aataatgttaaggaatccaaggaaatcaacatagaagagtttaagaaagcccttgcagtt
gtggattcacaggtcaagatgcttcctgcaacagctcaggttgctgcacaagaaggtgat
tatcttgctcggtgctttaacaagatgaagatctgtgcagaacaccctgaaggtcctctt
cgtatcagaggaccaggtcgtcatcggtttcacccctttcaatacaggcatcttggtcaa
tttgctccgctaggtggagagcaaacggctgcacagcttcctggagactggatttccatt
ggtcgcagcacccagtggttatggtattccgtgtatgcgagcaagcaagtcagttggcgt
actaggatgctggtagtatctgactggttcaggcgattcatcttcggaagggactccagc
tgcatatga