KEGG   Drosophila willistoni: 6648566
Entry
6648566           CDS       T01067                                 
Name
(RefSeq) NADH-ubiquinone oxidoreductase 75 kDa subunit, mitochondrial
  KO
K03934  NADH dehydrogenase (ubiquinone) Fe-S protein 1 [EC:7.1.1.2]
Organism
dwi  Drosophila willistoni
Pathway
dwi00190  Oxidative phosphorylation
dwi01100  Metabolic pathways
Module
dwi_M00143  NADH dehydrogenase (ubiquinone) Fe-S protein/flavoprotein complex, mitochondria
Brite
KEGG Orthology (KO) [BR:dwi00001]
 09100 Metabolism
  09102 Energy metabolism
   00190 Oxidative phosphorylation
    6648566
Enzymes [BR:dwi01000]
 7. Translocases
  7.1  Catalysing the translocation of protons
   7.1.1  Linked to oxidoreductase reactions
    7.1.1.2  NADH:ubiquinone reductase (H+-translocating)
     6648566
SSDB
Motif
Pfam: Molybdopterin Fer4_Nqo3 Fer4_NDSU1 Fer2_4 NADH-G_4Fe-4S_3 NADH_dhqG_C Fer2
Other DBs
NCBI-GeneID: 6648566
NCBI-ProteinID: XP_002071892
UniProt: B4NDH2
LinkDB
Position
XL
AA seq 738 aa
MIRAPLVKALGALSSPTHQIQIGSRAVRTTAVIAQQAPAKAPEKIEVFVDDIPVQVLPGT
TVLQAAAQIGVEIPRFCYHERLAVAGNCRMCLVEVEKSPKPVAACAMPVMKGWRIKTNSD
LTRKAREGVMEFLLMNHPLDCPICDQGGECDLQDQAMAFGSDRSRFTDINYTGKRAVEDK
DIGPLVKTIMTRCIHCTRCVRFASEIAGVDDLGTTGRGNDMQIGTYVEKLFLTELSGNVI
DLCPVGALTNKPYSFVARPWEIRKVSSIDVLDAVGSNIVVSTRTNEVLRILPRENEDVNE
EWLADKSRFACDGLKRQRLVAPMVRMPNGELQAVEWEGALIAVAKALKKANGQVAGVSGQ
LADVESLVALKDLVNRLEGETLVTEQGFIKGAGSDVRANYLLNSTIAGLEEADAVLLVGT
NPRYEAPLVNTRLRKAYVHNELQIASIGPKIDLSYQHENLGADASLIKDVCSGTHAFSKV
LEGAKKPAIIIGADLLERPDGAAIHATILDYCQKLKKKDWNPFNVLQNNAAQVGALDVGY
QAGVEAVIKAQPKVLFLLNADAGKLTREQLPKDCFIVYIGSHGDNGASIADAVLPGAAYT
EKQAIYVNTEGRPQQTLTAVSPPGMAREDWKILRAISEVVSTPLPYDTLDELRSRLEDLG
PHLTRLGELEPASLSEAGSQATISKSINGGPIDVKQKELRDYFMTDAVSRASPTMAKCIS
AVNKQQRQNEQAKQSVAI
NT seq 2217 nt   +upstreamnt  +downstreamnt
atgatacgtgcaccgctggtgaaggcgctgggcgccttgagctcacccacacatcagatc
caaatcggcagccgagcggtgcgaaccactgccgtcattgcccagcaggccccggccaag
gcaccagagaagatcgaggtgtttgtggatgacattcccgtgcaggtgttgccaggaacc
acagtgctccaggccgccgcccaaattggtgtggaaattccacgcttctgctatcatgag
cgtctggccgtcgccggcaactgtcgcatgtgcctggtggaggtggagaagagtcccaag
cccgtggccgcctgtgccatgccagtgatgaagggttggcgcatcaagaccaattcagat
ctcacccgcaaggctcgtgagggtgtcatggagttccttttgatgaaccatccattggat
tgtcccatttgcgatcaaggcggtgaatgcgatctgcaggatcaagccatggccttcggc
tcggatcgttcccgtttcacggacatcaattacactggcaagcgtgccgtcgaggataag
gatattggaccgctggtaaagactataatgacacgttgcatccattgcactcgctgtgtg
cgctttgcttctgaaatcgccggagttgatgatctgggcaccactggacgtggcaatgac
atgcaaatcggcacctatgtagagaagctcttccttacggaactttcgggcaatgtcatc
gacttgtgccccgtcggtgctctgaccaacaagccatacagcttcgtcgcccgtccctgg
gagatccgcaaggtgagcagcattgatgtcctggatgctgtgggcagcaacatcgttgtg
agcacccgaaccaatgaggtgttgcgtattctgccacgcgaaaatgaggatgtcaatgag
gagtggttggctgacaaatcgcgtttcgcttgcgatggcttgaagcgccaacgtctggtg
gctcctatggtgcgcatgcccaacggcgagctgcaggccgtagagtgggagggagctctg
attgcagtggccaaggctttgaagaaagccaacggtcaggttgctggtgtgtctggccaa
ttggccgatgtggaatctttggtggctctgaaggatctggttaaccgcttggagggcgaa
actctggtcacggaacaaggtttcatcaagggtgccggctcagatgtgcgggcaaactat
ctgctcaacagcacaattgccggcctagaggaagccgatgctgttcttttggtaggcacg
aatcctcgttacgaggctccattggtcaatactcgtctgcgcaaggcctatgtccataat
gagctgcagattgcctccattggacccaaaattgatttgtcataccaacacgagaatctt
ggcgccgacgctagtctgatcaaggatgtgtgctccggcacgcatgccttctccaaggta
ttggaaggtgccaaaaagccagccattattattggtgctgatctgcttgagcgtcctgat
ggagcagccattcatgccaccatcctcgactattgccagaagctcaagaagaaggattgg
aatccattcaatgttttgcaaaacaatgccgctcaggttggcgcattggatgtgggctac
caggcaggtgttgaggctgtgattaaagcccaaccaaaggttctgttccttctaaatgct
gatgctggcaagttgacccgcgaacagttgcccaaggattgcttcatcgtatatatcggc
tcacatggcgataacggtgcctccattgccgatgccgttctgcctggagcggcctacaca
gagaaacaggccatctatgtgaatacagagggtagaccacagcagactttgactgctgtc
tcgccgcctggcatggctcgcgaagattggaaaatattgcgtgccatctctgaggtggtg
agcactccattgccctatgatacactggatgagctgcgctcgcgtctggaggatctggga
ccgcatttgacgcgtctgggagaattggagccggctagcttgagtgaggctggatcacag
gccacgattagtaaatctatcaatggcggtccgatcgatgttaaacaaaaggaactgcgt
gactacttcatgaccgatgccgtttcgcgcgcatcgccaacaatggccaagtgcatatcg
gcggttaataagcagcagcgacaaaacgaacaggccaagcagagtgtggccatctaa

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