Entry
Symbol
atpD
Name
(GenBank) ATP synthase subunit beta
KO
Organism
cus Corynebacterium ramonii FRC0011
Pathway
Module
cus_M00157 F-type ATPase, prokaryotes and chloroplasts
Brite
KEGG Orthology (KO) [BR:cus00001 ]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
CulFRC11_0905 (atpD)
09180 Brite Hierarchies
09181 Protein families: metabolism
00194 Photosynthesis proteins [BR:cus00194 ]
CulFRC11_0905 (atpD)
Enzymes [BR:cus01000 ]
7. Translocases
7.1 Catalysing the translocation of protons
7.1.2 Linked to the hydrolysis of a nucleoside triphosphate
7.1.2.2 H+-transporting two-sector ATPase
CulFRC11_0905 (atpD)
7.2 Catalysing the translocation of inorganic cations
7.2.2 Linked to the hydrolysis of a nucleoside triphosphate
7.2.2.1 Na+-transporting two-sector ATPase
CulFRC11_0905 (atpD)
Photosynthesis proteins [BR:cus00194 ]
Photosystem and electron transport system
F-type ATPase [OT]
CulFRC11_0905 (atpD)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
965260..966705
Genome browser
AA seq
481 aa AA seq DB search
MTTALEEQNTQQAAIAGRVVRVIGPVVDVEFPRGELPALFNALTVEVTLEAVAKTITLEV
AQHLGDNLVRAVSMAPTDGLVRGAAVIDSGKPISVPVGDVVKGHVFNALGDCLDEPGLGR
DGEQWGIHRDPPPFDQLEGKTEILETGIKVIDLLTPYVKGGKIGLFGGAGVGKTVLIQEM
ITRIAREFSGTSVFAGVGERTREGTDLFLEMEEMGVLQDTALVFGQMDEPPGVRMRVALS
GLTMAEYFRDVQHQDVLLFIDNIFRFTQAGSEVSTLLGRMPSAVGYQPTLADEMGVLQER
ITSTKGKSITSLQAVYVPADDYTDPAPATTFAHLDATTELDRAIASKGIYPAVNPLTSTS
RILEPGVVGERHYEVAQRVIHILQKNKELQDIIAILGMDELSEEDKITVQRARRLERFLG
QNFFVAEKFTGIPGSYVPLAHTIEAFERICNGDFDHYPEQAFNGLGGLDDVEAAYKKMTE
K
NT seq
1446 nt NT seq +upstream nt +downstream nt
atgaccacagctcttgaagagcagaacacgcagcaggcggctatcgccggccgcgtcgtg
cgcgtcatcggtccggtcgtcgacgtggaattcccgcgtggcgagttgccggcactgttc
aacgcgctgactgtcgaggtcaccctcgaagcagtcgctaaaaccattacccttgaggtt
gctcagcacctcggcgacaacttggttcgtgccgtgtccatggcaccgaccgacggtctc
gtccgtggcgctgctgtgatcgacagcggtaagccgatctcagttcccgttggtgacgta
gtcaagggacacgtcttcaacgctctgggtgattgcctcgatgagccaggtcttggccgt
gacggtgagcagtggggcatccaccgcgatccgccaccttttgaccagcttgagggtaag
accgagattctggaaaccggtattaaggtcatcgacctgctgaccccgtatgttaagggc
ggcaagatcggcctgttcggtggtgctggtgtgggtaagaccgttcttatccaggaaatg
atcacccgtatcgctcgcgagttctccggtacctcggtgttcgcaggcgtgggtgagcgt
acccgtgagggcaccgacctcttcctggaaatggaagagatgggcgttctccaggacacc
gctcttgtgttcggccagatggacgagcctccaggagttcgtatgcgcgtggcgctgtcc
ggcctgaccatggcggagtacttccgcgatgtgcagcaccaggacgtgcttctgttcatc
gacaacatcttccgtttcacccaggcaggttccgaggtttccaccctcctaggccgcatg
ccttctgccgtgggttaccagccaacgctggcagacgagatgggtgttctgcaggagcgt
attacctccacaaagggtaagtcgattacgtctctccaggccgtttacgtgcctgccgac
gactataccgacccggctccagctaccaccttcgctcacctcgacgcgacgacggagctc
gaccgtgctattgcttccaagggtatttaccctgcagtgaacccgctgacatctacgtct
cgtatcctcgagccaggtgttgttggcgagcgtcactatgaggtagctcagcgcgttatc
cacatcctgcagaagaacaaagaactccaggacatcatcgccatccttggtatggacgag
ctgtctgaagaggacaagatcacggttcagcgcgcacgtcgccttgagcgtttcttgggt
cagaacttcttcgtggcagagaagttcaccggcatcccaggttcctatgtcccgctggct
cacaccatcgaggcattcgagcgtatctgcaacggcgacttcgaccactacccagagcag
gccttcaacggcttgggtggcttggatgacgtcgaggctgcttacaagaagatgaccgag
aagtag