Massilia sp. WG5: AM586_23650
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Entry
AM586_23650 CDS
T04122
Name
(GenBank) formate dehydrogenase
KO
K00123
formate dehydrogenase major subunit [EC:
1.17.1.9
]
Organism
masw
Massilia sp. WG5
Pathway
masw00630
Glyoxylate and dicarboxylate metabolism
masw00680
Methane metabolism
masw01100
Metabolic pathways
masw01120
Microbial metabolism in diverse environments
masw01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
masw00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
AM586_23650
09102 Energy metabolism
00680 Methane metabolism
AM586_23650
Enzymes [BR:
masw01000
]
1. Oxidoreductases
1.17 Acting on CH or CH2 groups
1.17.1 With NAD+ or NADP+ as acceptor
1.17.1.9 formate dehydrogenase
AM586_23650
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Gene cluster
GFIT
Motif
Pfam:
Molybdopterin
Molydop_binding
Fer2_4
Molybdop_Fe4S4
Fer4_7
Fer4_Nqo3
Fer4_9
Fer4_21
Fer2
Fer4
Fer4_8
Fer4_10
Fer4_16
Fer4_6
Fer4_17
Fer4_2
Fer4_4
TRM5-TYW2_MTfase
CDC48_N
Fer4_18
Motif
Other DBs
NCBI-ProteinID:
ALK98750
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All DBs
Position
complement(2470625..2473441)
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AA seq
938 aa
AA seq
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MNASLQTVTFTINGREVQALRHETLIEVADREGIEIPRLCYAEGMEAVGNCRSCMVEIDG
ERVLAPSCCRHPSQGMKVTTDSERAVKAQKMVLELLASDMPEKDYTRHNEVDEWALKLGV
GKPRFPATRREPQQDATHAAITVNLDACIQCTRCVRACRDEQVNDVIGLAFRGQDAKIVF
DQDDPMGASTCVACGECVQACPTGALMPARDAALSVPDKKVDSVCPYCGVGCQLTYNVKD
NKILYVEGRDGPANHGRLCVKGRYGFDYAHHPHRLTKPLIRRAGVPKTGDFTMDPSTVMD
VFREASWEEALDLAGGSLARIRDSHGKRALAGFGSAKGSNEEAYLFQKLVRTGFGSNNVD
HCTRLCHASSVAALLEGIGSGAVSNPVMDVTRAEVVIVIGANPTVNHPVAATWMKNAVRT
GTKLILMDPRRSELARHAHRHLQFKPDTDVALLNAMMHVIVNEGLVDKSFIESRTIGYDE
LAKNVEGYSPEAMAPICGIDAETIRYVARLYASSKGSMILWGMGVSQHVHGTDNARCLIA
LALMTGQIGRPGTGLHPLRGQNNVQGASDAGLIPMMYPDYQRVDNAAARARFEQAWGMPL
DDKPGLTVVEIMDDILAGGIKGMYIMGENPAMSDPDANHAREALAALDCLVVQDIFLTET
AYLADVILPASAFAEKAGSFTNTDRLVQLGRQAILPPGDAKQDLWIIQQMGQRLGLPWNY
GHVSEVFDEMRRLMPSIAGITWERLERDGAVTYPCMVEGDPGQPVVFHDSFPRGTGDEQG
RARFVPADIIPANERPDAEYPMVLITGRQLEHWHTGSMTRRAGVLDAIEPDPVALVHPLD
LEAMGGRPGDVITITSRRGEVALYARADDSSPRGAIFVPFCYYEAAINRLTNSALDPFGK
IPEFKYCAIRVALGGEMARQGSYGGGQILAAVAQSHNE
NT seq
2817 nt
NT seq
+upstream
nt +downstream
nt
atgaacgcgagtctacaaaccgtcacctttaccatcaacggcagggaagtacaggccctg
cgccacgaaaccctgatcgaggtcgcggaccgcgagggcatcgagatcccgcgcctgtgc
tacgccgaaggcatggaagcggtcggcaactgccgctcctgcatggtcgagatcgacggc
gaacgcgtgctggcgccgtcctgctgccgtcatccgagccagggcatgaaggtcacgacc
gacagcgagcgcgccgtgaaggcgcagaagatggtgctggagctcctggcgtcggacatg
cccgagaaggactacacgcgccacaacgaggtcgacgagtgggccttgaagctcggtgtc
ggcaagccgcgcttcccggccacgcgcagggagccgcagcaggacgccacgcacgccgcc
atcaccgtcaacctcgacgcctgcatccagtgcacgcgctgcgtgcgcgcctgccgcgac
gaacaggtcaacgacgtgatcggcctggccttccgcggccaggatgcgaagatcgtgttc
gaccaggacgacccgatgggcgcttcgacctgcgtggcctgcggcgaatgcgtgcaggcc
tgcccgaccggcgccctgatgccggcgcgcgacgccgcgctgagcgtccccgacaagaag
gtcgactcggtctgtccctactgcggcgtcggctgccagctgacctacaacgtcaaggac
aacaagatcctttacgtggagggccgcgacggcccggccaaccacggccgcctgtgcgtg
aaaggccgctacggcttcgactacgcgcaccacccgcaccgcctgacgaagccgctgatc
cgccgcgccggcgtgccgaagaccggcgacttcacgatggacccgagcaccgtgatggac
gtattccgcgaagcgagctgggaagaggcgctggatcttgccggcggctcgctggcgcgc
atccgcgacagccatggcaagcgcgcgctggcgggcttcggctcggccaagggcagcaac
gaagaggcttacctgttccagaagctggtgcgcaccggcttcggcagcaacaacgtcgac
cactgcacccgcctgtgccatgcctcgtcggtggccgcgctcctggaaggcatcggctcc
ggcgcggtctcgaacccggtgatggacgtgacccgcgccgaggtcgtgatcgtgatcggc
gcgaacccgaccgtgaaccacccggtggctgcgacctggatgaagaacgcggtgcgcacc
ggcaccaagctgatcctgatggacccgcgccgctcggagctggcgcgccatgcgcaccgc
cacctgcagttcaagccggacaccgacgtcgccctgctgaacgcgatgatgcacgtgatc
gtcaacgaaggcctggtcgacaagagcttcatcgagagccgcaccatcggctacgacgaa
ctggcgaagaacgtcgaaggctacagccccgaagccatggccccgatctgcggcatcgat
gcggagaccatccgctatgtggcccgcctgtacgcgagctcgaaaggctcgatgatcctg
tggggcatgggcgtatcccagcacgtgcacggcaccgacaatgcgcgctgcctgatcgcg
ctggccctgatgacgggccagatcggccgccccggcaccggcctgcatccgctgcgcggc
cagaacaacgtgcagggcgcctccgacgccggcctgatcccgatgatgtacccggattac
cagcgcgtcgacaacgccgccgcgcgcgcccgcttcgagcaggcctggggcatgccgctg
gacgacaagcccggcctgacggtcgtcgagatcatggacgacatcctggccggcggcatc
aagggcatgtacatcatgggcgagaacccggccatgtccgaccccgacgccaaccatgcg
cgcgaagcgctggccgcactcgattgcctggtggtgcaggacatcttcctgaccgagacc
gcttacctggccgacgtgatcctgccggcctccgccttcgccgagaaggccggcagcttc
acgaataccgaccgcctggtccagctgggccgccaggccatcctcccgccgggcgatgcc
aagcaggacctgtggatcatccagcagatgggccagcggctcggcctgccgtggaactat
ggtcatgtgtccgaggtgttcgacgagatgcgcaggctgatgcccagcatcgccggcatc
acctgggagcgcctcgagcgcgacggcgccgtgacctatccgtgcatggtcgagggcgac
cccggacagccggtggtgttccacgacagcttcccgcgcgggaccggagacgagcagggc
agggcgcgcttcgtcccggccgacatcatcccggccaacgaacgtcccgatgccgagtat
ccgatggtgctgatcaccggccgccagctcgagcactggcataccggcagcatgacccgg
cgcgccggcgtgctggatgcgatcgagcccgatccggtggccctcgtgcatccgctcgac
ctcgaagcgatgggcggccggccgggcgacgtcatcacgatcacctcgcgccgcggcgag
gtggcgctgtatgcgcgcgccgacgacagttcgccgcgcggcgccatcttcgtccccttc
tgctactacgaggcggcgatcaaccggctgaccaactcggcgctcgaccccttcggcaag
atccccgagttcaagtattgcgcgatccgggtggcgctgggcggggaaatggcgcgccag
ggttcctacggtggcggccagattctggcagccgtggcacaatcacataatgaatga
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