Drepanopeziza brunnea: MBM_05615
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Entry
MBM_05615 CDS
T03105
Name
(RefSeq) hypothetical protein
KO
K03934
NADH dehydrogenase (ubiquinone) Fe-S protein 1 [EC:
7.1.1.2
]
Organism
mbe
Drepanopeziza brunnea
Pathway
mbe00190
Oxidative phosphorylation
mbe01100
Metabolic pathways
Module
mbe_M00143
NADH dehydrogenase (ubiquinone) Fe-S protein/flavoprotein complex, mitochondria
Brite
KEGG Orthology (KO) [BR:
mbe00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
MBM_05615
Enzymes [BR:
mbe01000
]
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)
MBM_05615
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SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Molybdopterin
Fer4_Nqo3
Fer4_NDSU1
Fer2_4
NADH_dhqG_C
NADH-G_4Fe-4S_3
Fer2
TPP_enzyme_M
Motif
Other DBs
NCBI-GeneID:
18761550
NCBI-ProteinID:
XP_007293504
UniProt:
K1WTC6
LinkDB
All DBs
Position
Unknown
AA seq
743 aa
AA seq
DB search
MLRNSLARSAALRTSRPSSSAARTFATSGRRQAEVQLTIDGKQVSIEAGSALIQACEKAG
VTIPRYCYHEKLMIAGNCRMCLVEVERAPKPVASCAWPVQPGMVVKTNSALAHKAREGVM
EFLLANHPLDCPICDQGGECDLQDQSMRYGADRGRFHEIGGKRATEDKNIGPLIKTSMNR
CIHCTRCIRFANDIAGAPELGSTGRGNDMQIGTYLEKNLDSEMSGNVIDLCPVGALTSKP
YAFRARPWELKHTESVDVLDGLGSNIRVDSRGLEVMRILPRLNDDVNEEWINDKTRFACD
GLKTQRLTIPLIRKDNKFLPASWEQALVEIGAAFKDFAPQGNEFKAIAGELVEVESMVAL
KDLANKVGSENLALDQPSGSQPIAHGIDVRSNYLFNSKIWGVEEADAILIVGSNTRHEAA
GLNARIRKQWLRSDLEIGVVGESWDSTFEFEHLGTDAAALKKALAGPFGKKLQTAKRPMI
IVGSGVTDHADAKAIYEMVGAFVEKNAANFLTEEWNGYNVLQRAASRAGAYEVGFTTPSA
AVAQTKPKFVWLLGADEFNAADIPKDAFVVYQGHHGDRGAQVADVVLPGAAYTEKSGTYV
NTEGRVQMTRAATSLPGAARTDWKIIRAASEFMGAALPYDDVAQLRDRMVEISPALASYD
IVEPVALKQLSKVQLVDQNKGSKPTGEPLKKVIENFYFTDVISRSSPTMARCSAAKEQGN
PETNFMASGYSSAHPHGQVAYGS
NT seq
2232 nt
NT seq
+upstream
nt +downstream
nt
atgctgcgcaattccctggcgcggtcggcggcgctgcggacgagcaggccgagctcgagt
gccgcgaggacatttgcgacgtcgggcaggagacaggcggaggtccaactgacgattgat
ggcaagcaggtctcgatcgaagcgggctctgctctcatccaagcgtgcgagaaggcggga
gtgacaattccgagatactgctaccatgaaaaactcatgattgcgggaaactgtcgaatg
tgcctggtagaagtcgagagggccccgaaacccgtggcatcgtgcgcgtggcccgtccaa
ccgggaatggtcgtcaagaccaactcggccctggcacacaaggctcgggaaggagtgatg
gaatttctgctggccaaccaccccctcgactgcccgatttgcgaccaaggaggcgaatgt
gatttgcaagaccagtcgatgagatacggagccgacagaggtcgattccacgagattggc
ggcaagcgtgccactgaggacaagaacatcggtcccctgatcaagacttcgatgaacaga
tgtatccactgcacgagatgtatccgatttgccaacgacattgctggtgctccggaattg
ggatcgacggggcgaggaaacgatatgcagattgggacatacctcgagaagaacctggac
tccgagatgtctggtaatgtgatcgatttgtgccctgttggagctctcacttccaagcca
tacgctttcagagcccgcccttgggaattgaagcataccgaatctgttgacgttctagac
ggtcttggatcgaatatccgggtggactcgagaggattggaagtgatgcgaatcttgccc
agacttaacgacgatgtcaacgaggagtggattaatgacaagacccgatttgcttgtgat
ggattgaagacccagaggcttacgatccctctcatccgcaaggataacaagttcctcccg
gcgagctgggaacaggctttggttgagattggagctgcgttcaaggattttgcaccacag
ggcaacgagttcaaggcaattgccggagagcttgttgaggtcgaatctatggtcgctctc
aaggatttggcgaacaaggtcggatcagagaacctggctctggatcagccatctggtagc
caaccgattgcccacggaatcgatgtccgctccaactaccttttcaactccaagatctgg
ggtgtcgaggaggctgatgctattctaattgttggcagcaatacacgacatgaggccgct
ggtttgaacgcccggatcagaaagcaatggctgcgatccgatcttgagattggtgttgtt
ggcgaatcctgggactctacttttgaatttgagcacctgggtaccgatgcggctgcgctc
aagaaagctctggctggacctttcggcaagaagcttcaaaccgccaagagaccaatgatc
attgttggatctggtgtcactgatcacgctgatgctaaagccatctatgagatggtcggt
gcttttgtcgagaagaacgctgccaacttcctgactgaggagtggaacggatacaacgtc
ctacaacgtgctgcgtcaagagctggtgcttacgaagtcggattcactactccatcagct
gctgttgcccagaccaagcccaaatttgtctggctccttggtgccgatgagttcaacgct
gcggatattcccaaggatgcctttgtcgtctaccaaggtcatcacggtgatcgtggcgcc
caagttgccgatgtcgttcttccaggtgccgcttacaccgagaagtccggtacctacgtc
aacaccgaaggccgtgtacagatgactcgtgctgccacttcattacccggtgccgcccga
accgactggaagattattcgagctgccagtgagttcatgggcgcagcacttccatacgac
gatgtagcacagctccgtgaccggatggtcgagatcagtcccgcgttggcaagctatgat
attgtcgagccagtcgccttgaagcagttgagcaaggtgcaattggtggaccagaacaag
ggcagcaagcctactggtgagccattaaagaaggtcattgagaacttctatttcacagac
gtcatttccagaagttcgcctaccatggcgagatgttcagcagcaaaggagcagggcaac
cccgagacgaactttatggcttcgggctactcgagtgctcatccacatggccaggtcgct
tacgggtcgtga
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