KEGG   Alternaria alternata: CC77DRAFT_979964Help
Entry
CC77DRAFT_979964  CDS       T05291                                 

Definition
(RefSeq) succinate dehydrogenase
  KO
K00234  succinate dehydrogenase (ubiquinone) flavoprotein subunit [EC:1.3.5.1]
Organism
aalt  Alternaria alternata
Pathway
aalt00020  Citrate cycle (TCA cycle)
aalt00190  Oxidative phosphorylation
aalt01100  Metabolic pathways
aalt01110  Biosynthesis of secondary metabolites
aalt01130  Biosynthesis of antibiotics
aalt01200  Carbon metabolism
Module
aalt_M00148  Succinate dehydrogenase (ubiquinone)
Brite
KEGG Orthology (KO) [BR:aalt00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    CC77DRAFT_979964
  09102 Energy metabolism
   00190 Oxidative phosphorylation
    CC77DRAFT_979964
Enzymes [BR:aalt01000]
 1. Oxidoreductases
  1.3  Acting on the CH-CH group of donors
   1.3.5  With a quinone or related compound as acceptor
    1.3.5.1  succinate dehydrogenase
     CC77DRAFT_979964
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: FAD_binding_2 Succ_DH_flav_C Pyr_redox_2 Thi4 GIDA FAD_binding_3 Lycopene_cycl DAO HI0933_like
Motif
Other DBs
NCBI-GeneID: 29121637
NCBI-ProteinID: XP_018390392
JGI: 979964
UniProt: A0A177E0M6
LinkDB All DBs
Position
Unknown
AA seq 634 aa AA seqDB search
MRAFARAVSRHQYSAHRQSINPRQRRNFASVNGPNVKNLTVIDHHYDAIVVGAGGAGLRA
AVGLTEAGLKTACVSKLFPTRSHTVAAQGGINAALGNMTEDDWRWHMYDTIKGSDWLGDQ
DAIHYMTREAVPAVVELENYGMPFSRTNEGTIYQRALGGQSLKYGKGGQAYRTACAADRT
GHAMLHTLYGQSLKEGVQFFIEWFALDLMMSEGKCVGITAMNMEDGTTHRIFAKNTVLAT
GGYGRAYFSATSAHTSTGDGSAMVSRAGLPLQDMEFVQFHPSGIYGAGVLITEGARGEGG
YLLNSEGERFMERYAPTAKDLASRDVVSRSMNLEILEGRGCGPNKDHIHLQLSHLPKDVI
MERLPGIAETAGIFAGIDITREPIPVLPTVHYCMGGIPTNYHGQVLDVDAKSGKEDVVEG
LYAAGEAACVSVHGANRLGANSLLDIVVFGRATALHISANHSPSEAHHPAPDNIGLDSIS
EINTFLESNGSTPTSSLRNSMQSTMQSTTSVFRTHNSLSKGNTQLGDIENKYTTDLRVTD
RSLIWNSDLIETLELRNLLTNASQTNKAALTRTESRGAHARDDFKERDDEEWMKHSLTWQ
SNLGKEVRFGTRAVNMGTLDEQEAASVPPMKRSY
NT seq 1905 nt NT seq  +upstreamnt  +downstreamnt
atgcgtgcctttgcgcgagccgtctcgcgccaccagtacagtgctcatcggcagtcgatt
aacccaagacagcggaggaatttcgcctcagtaaatgggccaaatgtcaagaacttgacg
gtcattgaccatcactacgatgcaattgttgttggagcaggtggtgcgggccttcgggct
gccgtaggactcacggaagctggactcaagactgcatgcgtatcgaaactctttcctacc
cgatcgcacacagtcgcagcacagggtggaataaatgccgcgctcggcaacatgacagaa
gatgactggcgctggcacatgtacgatacaataaaggggtcggactggctcggtgaccag
gacgccatccattatatgacgcgcgaagccgtcccagcggtcgttgaactcgagaactat
ggcatgccgtttagtcggacgaacgaaggaacgatatatcagcgagcattaggtggacag
tcattgaagtatggcaaaggtggacaagcctacagaacggcatgtgcggcagatcgcact
gggcatgcaatgctccatacactctatgggcagagtctgaaagaaggcgtgcagttcttc
attgagtggtttgcgctggacttgatgatgagcgagggcaagtgcgtgggcataacggct
atgaatatggaggacggaacaacgcataggatattcgccaaaaatacggtgctggcaacg
gggggatacggaagagcatacttcagtgcgacaagcgcgcatacaagcactggcgatggt
agcgcgatggtttcgagagcagggctaccgttacaagacatggagtttgtgcaattccac
ccttccggcatctacggcgcaggcgtcctgatcacggaaggcgctcgtggcgaaggcggc
tatctcctcaacagcgaaggcgaacgcttcatggaacgatatgctcccactgcgaaagat
ctcgcgtcacgtgatgtcgtctcacgctctatgaacctcgagatcctagaaggccgcggc
tgtggaccaaacaaggaccacatacatcttcaattatcgcatctaccaaaggacgtcatc
atggaaaggttgcctggaatcgccgaaacagctggtatatttgctggcatcgatataaca
agagagccgatacccgtattaccaacagtacattactgtatgggcggcatcccaaccaac
taccatggacaggtactagatgttgatgcgaagagtggcaaagaagatgttgttgaaggg
ttgtatgcagctggcgaggctgcttgtgtaagcgtacatggcgcgaaccgattaggagca
aattccttgcttgatatcgtggttttcggtcgagcgacagcactacacatctctgccaat
cactcgccgtcagaggcacatcacccagctcctgacaatatcggcctcgattctatcagc
gagatcaacactttcctagagtccaacggcagcacgccaacatccagtcttcgaaactcc
atgcaaagcaccatgcaatctacgacttctgtgtttcgcacccataactccttatccaaa
ggcaacactcaactcggtgacatcgagaacaagtacaccaccgacctacgcgtcacagat
cggtccttgatctggaattccgacctcattgagacactcgaactgcgaaatcttcttacc
aatgcaagtcagacgaacaaagcggcattgacaaggacggagagtagaggcgcgcacgca
agagacgactttaaagagagagatgatgaggagtggatgaaacatagtcttacgtggcag
agtaatctagggaaggaggtcaggttcggaacgagggcggtaaatatggggacgttggat
gagcaggaggcggcgagcgtgccgcctatgaagagatcgtactaa

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