Actinocatenispora sera: Asera_06460
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Entry
Asera_06460 CDS
T07446
Name
(GenBank) ABC transporter ATP-binding protein
KO
K06147
ATP-binding cassette, subfamily B, bacterial
Organism
aser
Actinocatenispora sera
Brite
KEGG Orthology (KO) [BR:
aser00001
]
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02000 Transporters [BR:
aser02000
]
Asera_06460
Transporters [BR:
aser02000
]
ABC transporters, eukaryotic type
ABCB (MDR/TAP) subfamily
ABCB-BAC subgroup
Asera_06460
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
ABC_membrane
ABC_tran
SMC_N
Zeta_toxin
AAA_16
RsgA_GTPase
DUF87
AAA_22
AAA_29
TsaE
HUTI_composite_bact
AAA_10
Motif
Other DBs
NCBI-ProteinID:
BCJ26538
UniProt:
A0A810KWT6
LinkDB
All DBs
Position
complement(692454..696308)
Genome browser
AA seq
1284 aa
AA seq
DB search
MRADDRKRGHNARSGNAGGGGSEAGWLRRLLGYCWRYRGRVIVAFGASVAGMGVTALVPL
IQRSIVDDSILSSKRPLLPLVGLLVLAALAIYGTAFLRRYHGGRLALDVQHDMRTALFAA
LSRLDGARQDELQTGQVVGRATSDITMVQGLLGMIPIMIGNVLLFVISLVVMITLSPLLT
LVALAVGPGLYWISVLSRRKLFPATWAAQQEAAAVAAEVDDAVTGVRVVKGFGQESQELT
KLERVARRLFASRLRAVRLNSRYNPALQAIPALGQVGVLALGGWLAVNQSITLGTFLAFS
SYLAQLIGPVRMLAGLLTIGQQARASVIRVFEVIDSQPLVTEAPDAIDVPADTTPTVEFD
DVHFGYVPSQPVLSGLTLSAAPGETIALVGSSGSGKSTVSLLLPRFYDVGAGAVRVAGHD
VRELTIDSLRASIGLVLEDSFLFSESIRDNIAYGRPDATDEQVVAAAKAAEAHEFILGLR
DGYDTMVGEKGLTLSGGQRQRVALARALITDPRILVLDDATSAVDAQVEAEIHATLHRVM
QGRTTLLIAHRRSTLALADRIAVLDGGRVVDIGTEAELAERCPLYTLLLSGPGDDAEGID
AGELPAEPALVVPDSAADELNDDGTTARLWDPSRAPEPEHVPGLAGDPAALPRGGGGGGG
GGMGRMGGALASMPPTPDLLAKVAALPPATDTPDVDDDSVRAADPRFSLRRLIAPMRAPL
LVALLLVAVDAAATLILPALIRSGVDSGVQHRHLAVIATVSIIGLGVVLIDWVVQIGQTR
ITGRTGERMLYALRVKTFAHLQRLGLDYYERELSGRIMTRMTTDVDAFSSFLQTGLVQAV
VSVLTFFGILGALLYLNVELGLVVCSVLPIMVLATLVFRSRSSKAYTEAREKVGIVNADL
QENVAGMRVAQAYRREGRNRARFSARSDDYRRTRTRAQRYIATYFPFVQFLSTVAGALVL
VVGGQLVHSGSLSTGALIAYLLYIEMFFAPVQQLSQVFDGYQQAAVGLRRIVELLRTPTS
TPQAADPIAVPPRLRGEIVFADVSFGYSPDLPPALSDVDLAVSPGETVAVVGETGAGKST
LVKLVSRYYDVTGGAVLVDGVDIRDYDLPGYRHRMGVVPQEPYLFPGTVRDTIAYGRPAA
SNAEVERAARAVGAHDMIARLEGGYYHEVAERGRNLSSGQRQLLALARAQLVAPDILVMD
EATAALDLATEAEVTRATDRLVGKRTTLVVAHRLTTAARADRIVVLDRGRIVEAGTHAEL
LAADGAYARQWEVFTTGQTITAAR
NT seq
3855 nt
NT seq
+upstream
nt +downstream
nt
atgagggcggacgaccgcaaacggggacataacgcccggtccggcaacgccgggggcggc
ggcagcgaggccggatggttgcggcgcctgctcgggtactgctggcgctaccgcggccgg
gtgatcgtggcgttcggcgcctcggtggccgggatgggcgtcaccgcgctggtaccgctg
attcaacgctccattgtggacgattcgatcctgtcctcgaagcggccgctgctgccgctg
gtcgggctgctggtgctggccgcgctggcgatctacggcaccgcgttcctgcgccggtac
cacggcggccggctggcgctggacgtgcagcacgacatgcggaccgcgctgttcgccgcg
ctgtcccggctggacggtgcccggcaggacgagctgcagaccggccaggtggtcggccgc
gccacttcggacatcaccatggtgcagggcctgctcgggatgatcccgatcatgatcggc
aacgtcctgctgttcgtcatctcgctggtcgtgatgatcaccctgtcgccgttgctgacg
ctcgtcgcgctcgcggtcggccccggcctgtactggatctccgtgctgtcccggcgcaag
ctgttcccggcgacctgggcggcgcagcaggaggcggcggcggtcgcggccgaggtggac
gacgcggtcaccggcgtgcgggtggtcaagggcttcggccaggagtcccaggaactgacc
aagctggagcgggtggcccggcggctgttcgcgtcccggctgcgggcggtgcggctgaac
agccggtacaacccggccctgcaggcgatcccggcgctcggccaggtgggcgtgctggcg
ctgggcggctggctcgcggtcaaccagtcgatcacgctcggcaccttcctcgccttctcc
agctacctggcccagctgatcggcccggtacggatgctcgccgggttgctgaccatcggc
cagcaggcgcgcgccagcgtgatccgggtgttcgaggtgatcgactcgcagccactggtc
accgaggcgcccgacgcgatcgacgtaccggccgacaccacgccgaccgtcgagttcgac
gacgtgcacttcgggtacgtgccgtcgcagccggtgctgtccgggctgaccctgtccgcg
gcgcccggcgagacgatcgcgctggtcggctcgtccgggtcgggcaagtcgacggtgtcg
ctgctgctgccccggttctacgacgtgggcgccggcgcggtccgggtcgccgggcacgac
gtgcgggagctgacgatcgactcgctccgggcgtcgatcgggctggtgttggaggacagc
ttcctgttctccgagtcgatccgggacaacatcgcgtacgggcgacccgacgccaccgac
gagcaggtggtcgccgcggcgaaggcggccgaggcgcacgagttcatcctcggcctgcgc
gacgggtacgacacgatggtcggggagaaggggctgactctgtccggcggccagcgccag
cgggtggcgctggcccgggcgctgatcaccgacccgcgcatcctggtcctggacgacgcg
acctcggcggtggacgcgcaggtcgaggcggagatccacgcgacgctgcaccgggtcatg
cagggccgcaccacgctgctgatcgcgcaccgccgctcgaccctggcgctggcggaccgc
atcgcggtgctggacggcggccgggtcgtcgacatcggtaccgaggccgagctggcagag
cgctgcccgctgtacaccctgttgctgtccggcccgggcgacgacgcggagggcatcgac
gccggcgagctgcccgccgaaccggcgctggtggtaccggactcggcggccgacgagctg
aacgacgacgggaccacggcgcggctgtgggatccgagccgcgcgccggagccggagcac
gtgccgggcctggccggcgatccggccgcgctgccgcgtggcggcgggggcggtggcggt
ggcgggatgggccggatgggcggcgcgctggcgagcatgccgccgacgccggacctgctc
gcgaaggtcgccgcgctgccaccggccaccgacaccccggacgtcgacgacgactcggta
cgggcggccgacccgcggttcagcctgcgccggttgatcgccccgatgcgcgcgccgctg
ctggtggcgctgctgctggtggcggtggatgcggcggcgacgctgatcctgccggcactg
atccgctccggcgtcgactccggcgtgcagcaccggcacctggcggtgatcgcgaccgtc
tcgatcatcgggctgggcgtcgtgctgatcgactgggtcgtccagataggacagacgcgg
atcaccggccgcaccggcgagcggatgctgtacgcgctgcgggtgaagacgttcgcgcac
ctgcagcggctcggcctggactactacgagcgggagctgtccggccggatcatgacccgg
atgaccaccgacgtggacgcgttctcgtcgttcctgcagaccgggctggtgcaggcggtg
gtgtcggtcctgacgttcttcggcatcctcggcgcgctgctctacctgaacgtcgagctc
ggcctggtggtctgctcggtgctgccgatcatggtgctggccacgctggtgttccggtcc
cgctcgtcgaaggcgtacaccgaggcgcgggagaaggtcggcatcgtcaacgccgacctg
caggagaacgtcgccggcatgcgggtggcccaggcgtaccgccgggaggggcgcaaccgg
gccaggttctcagcccgctcggacgactaccgccgcacccgcacccgggcgcagcgctac
atcgccacgtacttcccgttcgtgcagttcctgtccactgtggccggtgcgctggtgctg
gtggtcggcggccagctggtccacagtggatcgttgagcaccggcgcgctgatcgcgtac
ctgctctacatcgagatgttcttcgcgccggtgcagcagctgtcccaggtcttcgacggg
taccagcaggccgcggtggggttgcgccgcatcgtcgagctgctgcgtaccccgaccagc
acgccgcaggccgccgaccccatcgcggtcccgccgcggctgcgcggcgagatcgtgttc
gccgacgtgtcgttcggctactcgccggacctgcccccggcgctgtccgatgtggacctc
gcggtctccccgggggagacggtcgcggtggtcggtgagaccggcgccgggaagtcgacg
ctggtcaagctggtctcccggtactacgacgtgaccggcggcgcggtcctggtcgacggc
gtggacatccgcgactacgacctgcccggctaccggcaccggatgggtgtggtgccgcag
gagccgtacctgttccccggcacggttcgggacaccatcgcgtacggccggccggcggcg
agcaacgccgaggtggagcgcgcggcccgggcggtcggcgcgcacgacatgatcgcccgg
ctggagggtggctactaccacgaggtcgcggagcgcggccgcaacctgtccagcgggcag
cggcagctgctggcgctggcccgcgcgcagctggtggcgccggacatcctggtgatggac
gaggccaccgcggcgctcgacctggccaccgaggccgaggtcacgcgggccacggatcgc
ctggtgggtaagcgaaccacgctggtcgtggcgcaccggctgaccaccgcggcgcgggcc
gaccggatcgtggtgctcgaccgcggccgcatcgtcgaggccggtacgcacgccgagctg
ctcgccgccgacggcgcctacgcccggcagtgggaggttttcaccaccggtcagaccatc
acggcagcacgctga
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