KEGG   Desulfovibrio mangrovi: N1030_00160
Entry
N1030_00160       CDS       T08614                                 
Symbol
fdhF
Name
(GenBank) formate dehydrogenase subunit alpha
  KO
K05299  formate dehydrogenase (NADP+) alpha subunit [EC:1.17.1.10]
Organism
psyf  Desulfovibrio mangrovi
Pathway
psyf00680  Methane metabolism
psyf00720  Other carbon fixation pathways
psyf01100  Metabolic pathways
psyf01120  Microbial metabolism in diverse environments
psyf01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:psyf00001]
 09100 Metabolism
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    N1030_00160 (fdhF)
   00680 Methane metabolism
    N1030_00160 (fdhF)
Enzymes [BR:psyf01000]
 1. Oxidoreductases
  1.17  Acting on CH or CH2 groups
   1.17.1  With NAD+ or NADP+ as acceptor
    1.17.1.10  formate dehydrogenase (NADP+)
     N1030_00160 (fdhF)
SSDB
Motif
Pfam: Molybdopterin Molydop_binding Molybdop_Fe4S4 Fer2_4 NADH-G_4Fe-4S_3 Fer4_7 Fer4 Fer4_21 Fer4_Nqo3 Fer4_8 Fer4_9 Fer4_10 Fer4_2 Fer4_16 Fer4_6 Fer4_15 Fer4_3 Fer4_17 Fer4_4 Topo-V_HhH_2_2nd
Other DBs
NCBI-ProteinID: UZP67419
LinkDB
Position
38531..41227
AA seq 898 aa
MSNTLTLNGITCEFTPGETILDVARRNYVDIPTLCHLKGTTPTGACRICVVEVKGARSLV
AACAAPAGAGMEIQTESPNVVRSRRMNLELLLSSGTHDCLLCPASGDCTLQALAFRYGAG
GKRFAVRKPAHTPDVSNPFLIRDFSKCILCGRCVQACKQVQVNDAIDFGYRGAKTKIITR
NDLPLGQSDCVFCGECLQVCPVGAITLKDARKKPRLCETQAVRTTCAYCGVGCQVNLHVR
DNRIHMVTGAEAAPNHGSLCVKGRFGLEFINSPERLTTPLVRKDGELVPASWDEALNAVA
QRLSAVCTQHGADSVGVLTSARCTNEENYLIQKFARAVVGTNNVDHCARLUHSPTVAGLA
AAFGSGAATNPMHDVINADVVLITGSNITENHPVLAAQLKRAVKFGRPDGRRTRLIVADP
RKVGIARHADIWMRPTPGTDVAWINGLAHVILRENLHDAAYVAERTEEFEAFRAAVAAFT
PEHVQAVTGIPAAQVEEAARLYASGRALIFYCMGMTQHVSGTDNVKALANLSMLCGNIGR
EGGGLNPIRGQNNVQGACDMGGLPDKLPGYRNVADAEARGAVGKAWGTVLPDGKGMTSRD
MFHAMEHGTLKALYLVGENPMVSHADLGHAERCFDSLDFLVVQDIFLTETARRADVVLPS
ACFAEKDGTFTNTERRVQRVRKAVNAPGEALADWRIVCSLANRMGAQWSYASPKDVMREI
AAVTPSYAGISYDRIEEEGLHWPCPDAAHAGTPILHKEQFVRGKGRFHAVAFVPPAELPD
EAYPFILTTGRVLYQYHTGTMTRKAKGLAAKEGECFVEIAREDALRLGIGQGADVRVSSR
RGSIVVKARISPKAVSGTVFIPFHFAEAAANRLTHDASDPASGISEFKVCAVRVEPAA
NT seq 2697 nt   +upstreamnt  +downstreamnt
atgagtaacacactgacactgaacggcattacctgcgagttcacgcccggtgaaacgatt
ctggacgtggcgcggcgtaattatgtggatattcccacactgtgccacctgaaggggacg
acgcccacgggtgcgtgccgtatctgcgtggtggaggtaaagggcgcgcgcagccttgtg
gcggcctgtgccgcacctgccggtgcgggcatggagattcagacggaatcgccgaacgtg
gtgcgttcccgccggatgaatctggaactgctgctttcttcgggcacgcatgactgcctg
ctctgtccggcatcgggcgactgcaccctgcaggcgctggctttccgctacggtgcaggt
ggcaagcgttttgctgtccgaaagcctgctcataccccggacgtgtccaatcctttcctc
attcgcgacttttccaagtgcattctgtgcggtcgctgtgtgcaggcctgcaagcaggtg
caggtgaatgacgccatcgacttcggctatcgcggagccaagaccaagatcatcacccgc
aacgacctgccgctcggccagtcggactgcgtgttctgcggtgagtgcctgcaggtatgt
cccgtgggggccatcaccctcaaggatgcccgcaagaagccgcgcctgtgcgaaacgcag
gcagtgcgcaccacatgtgcatattgcggggtggggtgtcaggtgaatctgcatgtgcgt
gacaacaggattcacatggtaaccggtgcggaggcggcacccaaccatggcagcctgtgc
gtgaaaggccgtttcgggctggagttcatcaactcgccggaacgtctgacaacgccgctt
gtccgcaaggatggcgaacttgtccccgcatcatgggatgaggcgctgaatgcagtggcg
cagcgactgtctgccgtgtgtactcagcatggtgcggatagtgtgggcgtgctgacatcg
gcccgctgcaccaatgaagagaactacctcatacagaaatttgcccgcgcggtggtcggc
acgaataacgttgaccactgcgcacggctctgacactcccccacggtggccggtctggcc
gccgcattcggaagcggagctgcaaccaaccccatgcatgatgtgatcaacgccgacgtg
gtgctgattaccggttccaatattacggaaaaccaccccgtgctggcggcgcagctgaag
cgtgccgtgaagttcggcaggccggatggccgcagaacccgcctgattgtcgcggacccg
cgcaaggtgggcattgcccgccatgcggatatctggatgcgccccacgccgggaacggac
gtggcgtggatcaacgggcttgcccatgtgattctgcgcgagaacctgcacgatgccgca
tacgtggccgagcggaccgaagagttcgaggctttccgtgcggcggtggcggcgttcacg
ccggagcacgtgcaggccgtgacaggcattcccgccgcacaggtggaagaggccgcacgg
ctctatgcctccggcagggccctcatattctactgcatgggcatgacccagcacgtgagc
ggcacggacaacgtgaaggcgctggcaaacctttccatgctttgtggcaacatcggccgc
gagggcggcggactcaaccccattcgcgggcagaacaatgtgcagggcgcgtgcgatatg
ggcggtctgccggacaagctgccgggctaccgcaacgtggcggatgccgaagcccgcggt
gccgtgggcaaggcatggggaaccgtgctgccggacggcaagggcatgacctcacgcgac
atgttccatgccatggagcatgggacgctgaaggcgctgtatctggtgggcgagaatccc
atggtgtcccatgcggacctcggtcatgcagagcgttgctttgattctctcgattttctg
gttgtgcaggatatctttcttaccgaaacagctcgccgtgccgacgtggtgctgccttct
gcatgctttgcggagaaggacggcaccttcaccaataccgaacgccgcgtgcagcgcgta
cgcaaggctgtaaatgccccgggcgaggccctggcggactggcgaatcgtatgcagtctg
gccaatcgcatgggcgcacagtggtcctatgcctctcccaaggacgtcatgcgtgagatt
gcggcggtaacgccctcctacgcgggcatttcctacgaccggattgaggaagaagggctg
cactggccctgtccggatgccgcgcatgcaggcacgcccattctgcacaaggagcaattc
gtgcggggcaaggggcgttttcatgccgtggccttcgtgcctccggcggagctgcctgat
gaggcgtatcccttcatcctgaccacgggacgcgtgctgtatcagtaccataccggcacc
atgacccgtaaggccaaaggtctggcggccaaagaaggggaatgcttcgtggagattgcc
cgggaagatgcccttcgtctgggcatagggcagggagcggacgtgcgcgtgagctcgcgt
cgtggttccattgtggtgaaggcccgcatttcccccaaggcggtgtctggcaccgtgttc
attcccttccattttgcggaagcggcagccaaccggctgactcacgatgcctctgatccc
gcatccggcatcagcgagttcaaggtttgtgccgtgcgcgtggagcctgcggcatag

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