Burkholderia sp. PAMC 28687: AX768_19400
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Entry
AX768_19400 CDS
T05699
Name
(GenBank) divalent cation transporter
KO
K01535
H+-transporting ATPase [EC:
7.1.2.1
]
Organism
bui
Burkholderia sp. PAMC 28687
Pathway
bui00190
Oxidative phosphorylation
bui01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
bui00001
]
09100 Metabolism
09102 Energy metabolism
00190 Oxidative phosphorylation
AX768_19400
Enzymes [BR:
bui01000
]
7. Translocases
7.1 Catalysing the translocation of protons
7.1.2 Linked to the hydrolysis of a nucleoside triphosphate
7.1.2.1 P-type H+-exporting transporter
AX768_19400
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
E1-E2_ATPase
Hydrolase
Cation_ATPase_N
Hydrolase_3
DUF7454
Motif
Other DBs
NCBI-ProteinID:
AMM16989
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All DBs
Position
2:complement(882670..885024)
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AA seq
784 aa
AA seq
DB search
MALSVPQAGAPKLTTTDAAGLSTAEAALRLKQNGANAVADITPHPLWRAVRKLWAPVPWM
LEAAIVLQLGLGDYVGAGIVLLLLLFNAGLGLFQEGQAQATVDTLKSRLALIAAVRRDGQ
WTTVPAAALVAGDIVKLSLGTVVAADVRLSAGSVLLDQSMLTGESAATESGAGSLAFAGA
LVRRGEAVAEVIATSERTKFGRTAELVRTAKVESSQQKTVLRVVRNLVLFNGAVTLFLGI
YAFSVAMPIGEVVPLLLVALLSSIPVALPSMFTLAAAVGARSLASRGVLPTSLSAVDEAA
GIDILCSDKTGTLTRNELAVMAVRALPPYDEAHVLVLAAAASSDGGQDPVDTAIRRASAS
QPVKDTPALITFIPFDPALKRSEATVRRADGAQQRVLKGAFSTIAALAQPNADAAPIVDE
FEAKGLRVLAVAAGTSGALTIAGFIALSDPPRDDSAALVTELDGLGVRTVMVTGDARKTA
ETVATSVGIKGAVWDKSPIPADMNAESYAVFAGVLPEDKYQLVKSLQQRGHIVGMCGDGA
NDAPALRQAQMGIAVSTATDVAKSAAGVVLTEAGLGGIVALVKEGRTTFQRILTYTLRSI
IHKIVQVLFLAVGLILTGHAILTPALMVLMMVTGDFLAMSSSTDNVRPSPRPNIWRIRNL
TIAGIVLGIVDLLFCVACLATAKFALGFDTGMLRTVAVVTLVFSGQAVFYVAREREHLWS
SVPGKWLILSSMVDLTFISVLAINGVLMDAVPFVVIFGLLGAAAVLAVVLDSVKQVLFHR
LTVA
NT seq
2355 nt
NT seq
+upstream
nt +downstream
nt
atcgccctttcggtcccgcaagcgggtgcgccgaaactcacgacaaccgatgccgccggc
ctcagcacggcggaagccgcgctacggctcaaacaaaacggtgcgaacgccgttgccgat
atcacgcctcacccgctatggcgcgcagtcaggaaattatgggcgccggttccgtggatg
ctcgaagcggccatcgtgctgcaactgggactgggcgattatgtcggcgcgggtatcgtc
ctgttgttgctgctcttcaacgcggggctagggctattccaggaaggtcaggcgcaagcc
accgtcgataccctcaagtcacgcctcgcgctgattgcggccgtgcgtcgcgacggccag
tggactaccgtcccggcggccgcgcttgtggcgggcgatatcgtcaagctgtcgcttggc
accgtcgtcgccgccgatgtccggctgagcgccggctcggtcctcctcgaccagtcgatg
ctcaccggcgaatccgccgccaccgaatccggcgcgggatcgctggcgtttgccggcgcg
ctggtgcgtcgcggcgaagccgtggcggaagtgatcgcaaccagcgagcgcacgaagttc
ggccgcacggcggaactggtgcgcacggccaaggtcgaaagctcgcaacagaagacggtc
ttgcgtgtcgtgcgcaatctggtgttgttcaacggcgcggtgaccctgtttcttggcatt
tatgcgttttcggttgccatgccgatcggcgaggtcgtgccgctgctgctcgtggcgctt
ttatcgtcgattcccgtggcgttgccttccatgttcacgctcgccgccgcggtcggcgca
cgctcgctcgcaagccgcggcgtcttgccgacaagcctctcagccgtcgatgaagccgcg
ggcatcgacattctttgttccgacaagaccggcacgctgacgcgcaacgaactcgcggta
atggctgttcgcgcgctgccgccctacgacgaagcccacgtcctggtactggccgcagcc
gcgagttcggacggcggccaggatcccgtcgataccgccatccgccgcgcatcggcgagc
cagccggtcaaggacacaccggcgctgatcacgttcattccgttcgatcccgccctgaaa
cgctctgaagccacagtgcgccgtgcagacggcgcgcaacaacgcgttttgaaaggcgca
ttctcgaccattgcggcactcgcgcagccgaacgcagatgcggcgccgatcgtggatgaa
ttcgaggccaagggattacgcgtactggccgtcgcggccggaacgtccggtgccctgacg
atagccgggttcatcgccctgagcgatccgccccgcgacgactccgctgcgctggttacc
gaactcgacgggctcggcgtgcgcacggtcatggtgacgggcgacgcgcgcaagacggcg
gaaacggtggcgacatcggttggcatcaagggcgctgtctgggacaagagcccgattccc
gccgacatgaatgcggaaagctacgcggtcttcgcaggcgtgctgccggaggacaagtac
cagctcgtcaagtcgctgcagcagcgcggacacattgtagggatgtgcggcgatggcgcg
aacgacgcgcccgcgttaaggcaggcgcagatgggcattgcggtatcgacggccacggat
gtagcgaaatcggccgcgggcgtcgtgctcacggaagcgggccttggcggtatcgtcgcg
ctggtcaaggaaggccggaccacgttccagcgcatcctgacctacacgctgcgctcgatc
atccacaagatcgtgcaggtcctgttccttgccgtcggcctgattctgacgggtcacgcg
atcctcacgccggcgctcatggtgctgatgatggtgaccggcgacttcctggccatgtcg
tcttccaccgataacgtgcgcccctcgccacgcccgaacatctggcgcatccgcaacctg
accatcgcgggtatcgtgttgggaatcgtggatctgctgttctgcgttgcatgcctcgca
acggcgaaatttgcactgggcttcgacaccggcatgctgcgcaccgtggcagtcgtgacg
ctcgtattcagcggtcaggcggtcttttatgtcgcgcgggaacgggaacatctatggagt
tcggtgccggggaaatggctgattctgtcgtccatggtggatctgacgttcatcagcgtc
ctggcaatcaacggcgttctgatggatgccgtgccgttcgtcgtcattttcggcttgctg
ggcgccgcggcggtgctcgccgtcgtactcgattcagtcaaacaagtcttgtttcatcga
ttgacggtggcgtga
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