Amphibacillus xylanus: AXY_15020
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Entry
AXY_15020 CDS
T02266
Symbol
fliI
Name
(GenBank) flagellum-specific ATP synthase FliI
KO
K02412
flagellum-specific ATP synthase [EC:
7.4.2.8
]
Organism
axl
Amphibacillus xylanus
Pathway
axl02040
Flagellar assembly
Brite
KEGG Orthology (KO) [BR:
axl00001
]
09140 Cellular Processes
09142 Cell motility
02040 Flagellar assembly
AXY_15020 (fliI)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02044 Secretion system [BR:
axl02044
]
AXY_15020 (fliI)
02035 Bacterial motility proteins [BR:
axl02035
]
AXY_15020 (fliI)
Enzymes [BR:
axl01000
]
7. Translocases
7.4 Catalysing the translocation of amino acids and peptides
7.4.2 Linked to the hydrolysis of a nucleoside triphosphate
7.4.2.8 protein-secreting ATPase
AXY_15020 (fliI)
Secretion system [BR:
axl02044
]
Type III secretion system
Flagellar export apparatus
AXY_15020 (fliI)
Bacterial motility proteins [BR:
axl02035
]
Flagellar system
Flagellar assembly proteins
Type-III secretion
AXY_15020 (fliI)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
ATP-synt_ab
T3SS_ATPase_C
ATP-synt_ab_N
ABC_tran
RsgA_GTPase
NTPase_1
DUF87
Motif
Other DBs
NCBI-ProteinID:
BAM47634
UniProt:
K0IYW3
LinkDB
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Position
complement(1542255..1543562)
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AA seq
435 aa
AA seq
DB search
MNINSYKETIDRIDPYIRYGKIDRVVGLMIESIGPEVKIGNVCYIHSDNGKKIMAEVVGF
TGEKVLLMPYSQINDIGPGSLVEATDQSLKIKVGKGLAGKVIDALGQPLDHSLLPLGLQG
VDTDQMPPNPLDRPRILEPIELGVKTLDTMLTVGKGQRVGIFAGSGVGKSTLLGMIARNS
EADINVIGLIGERGREVKEFIDKDLGEEGLKRSIVVVATSDQPALMRIKGAYTATAISEY
FRDLGYNVNLMMDSVTRVAMAQREVGLATGEPPTTKGYPPSVFAILPKLLERTGTSDKGT
ITAFYTVLVDGDDLNDPIADATRGILDGHFVLDRRLAEQGQFPAINVLKSISRVMPQITT
AEEQALANEMRLNISTYEENYELIQIGAYKKGTNPIVDRAIQLHPKITAFLKQGIDEKCT
RAEAIEKMKSVLDGG
NT seq
1308 nt
NT seq
+upstream
nt +downstream
nt
gtgaacattaatagttataaagaaacaattgaccgcatcgatccatatatccgatatggg
aaaattgatcgagttgttggcctaatgattgaatcgattggaccagaagtgaaaattggg
aatgtctgctacattcattctgataatggtaagaaaattatggctgaagtcgtaggcttt
accggtgagaaagtgttattaatgccatattcccagattaatgatattggcccaggtagt
ttagtagaagctactgaccaatcattaaaaattaaagtaggaaaaggattagcaggcaag
gtaatcgatgcattggggcaaccacttgatcactcattactaccactagggttacaaggt
gtagataccgatcaaatgccaccgaacccacttgatcgacctcgtattttagaaccgatt
gagctcggagttaaaacgttagatacaatgctaacggtaggaaaaggtcaaagggtaggt
atctttgcgggtagtggagttggaaagagtacactattagggatgatcgctcgtaatagt
gaagctgatattaacgtgattggtttaattggggaacgtggacgtgaggttaaagaattt
atagataaggatttaggggaagaaggtcttaaacgctcaatcgttgtagtagcaacatca
gatcaacctgcattaatgcggattaaaggagcatatacagctacagcgattagtgagtat
tttagagacttaggttataacgtcaacttaatgatggattccgttactcgtgtagcgatg
gctcaaagggaagttggtctagctactggcgaaccaccgacaaccaaaggttatccacct
tcagtttttgctattttgccgaaattattagaaagaactgggacaagcgataaaggaaca
attactgcgttttatactgtattagttgatggggatgatttaaatgatcccattgctgat
gcgacccgaggaattctagatggtcactttgtcttagatcgaaggctagctgaacaagga
caattcccagctataaatgtattaaaatcaattagccgtgttatgcctcaaattactaca
gctgaggaacaggcacttgctaatgaaatgcgtttaaacatctcaacttatgaagaaaac
tatgagttaatccaaattggtgcatataaaaaaggaactaacccaatcgtcgacagagcg
attcagttacatccgaaaatcactgcatttttaaaacaagggattgacgaaaagtgtacg
agagcagaagcgattgaaaaaatgaaatctgttttagatggaggataa
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