Elioraea tepida: KO353_04135
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Entry
KO353_04135 CDS
T07340
Name
(GenBank) branched-chain amino acid ABC transporter ATP-binding protein/permease
KO
K01995
branched-chain amino acid transport system ATP-binding protein
K01998
branched-chain amino acid transport system permease protein
Organism
elio
Elioraea tepida
Pathway
elio02010
ABC transporters
elio02024
Quorum sensing
Brite
KEGG Orthology (KO) [BR:
elio00001
]
09130 Environmental Information Processing
09131 Membrane transport
02010 ABC transporters
KO353_04135
09140 Cellular Processes
09145 Cellular community - prokaryotes
02024 Quorum sensing
KO353_04135
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02000 Transporters [BR:
elio02000
]
KO353_04135
Transporters [BR:
elio02000
]
ABC transporters, prokaryotic type
Phosphate and amino acid transporters
Branched-chain amino acid transporter
KO353_04135
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
BPD_transp_2
ABC_tran
BCA_ABC_TP_C
AAA_21
AAA_29
AAA_27
RsgA_GTPase
SMC_N
AAA_30
AAA_23
nSTAND1
AAA_15
Motif
Other DBs
NCBI-ProteinID:
QXM25427
UniProt:
A0A975U2Z8
LinkDB
All DBs
Position
complement(862047..863888)
Genome browser
AA seq
613 aa
AA seq
DB search
MRPRLSVLLLVLLVVTLAAFPWVGDVIGERFPTSYELRLVMRGMILAIVAIGLNILVGYA
GLVSLGQAALYGLGAHVAALLALRAGFPFAAALLFSVLIPAAVGAMLAFPTVRVRGVYLA
VITIAFGLVFVNVLREWVSFTGGASGLVGIPRPTILGERLGATRATGFNYYYLILVFLLA
AIGVQAALVKSRYGRAMRAAAQSENAARALGINVVGIRTLAFAVSAGFAGLGGALFANLA
LFVNYETFTFTASIELLLMVILGGSGTLAGPLVGTSILFSATQFLQGLGEWQTFGYGLLL
ALVLFALPRGIVGSLARLAQGRASGEATRETGPWPNWVEGMERVTARHEESGQSTLITRG
LTLRFGGLTAVNAVDIDVRSRTVHALIGPNGAGKSSLLNVVSGFYRATSGEVSVFGERVG
SLPPHVLACRGIARTFQNTELFGQMTVLENVLVGQHVHFRSGFLETVLRLPRFRREERAA
LEEARRLLAFVGLSAFADEEARNLPFGHQRRLEIARALALRPKLLLLDEPAAGLTHGEIE
DLVALIRGLADRGMTIVLVEHHVEMIMAVSDRVTVLDYGEVIADGPPAAIQNDPRVIEAY
FGHATLPGQTVPA
NT seq
1842 nt
NT seq
+upstream
nt +downstream
nt
atgcgtccgcgcctctccgtcctgcttctggttctgctcgtcgtcaccctcgccgctttc
ccctgggtgggcgacgtgatcggcgaacgcttcccgacaagctacgagcttcggcttgtg
atgcgggggatgatcctcgcgatcgtcgcgatcgggctcaatatccttgtcggttatgcg
ggcctcgtctcgctcgggcaggcggcgctctatggtctcggcgcgcatgtcgctgcgctg
cttgcgcttcgggccgggtttcccttcgccgcggcgctgctcttctcggtgctgatcccc
gccgctgtcggcgcgatgctcgccttcccgaccgtgcgcgtgcgcggcgtctatctcgcc
gtcatcacgatcgccttcgggctcgtgttcgtgaacgtgctcagggagtgggtgagcttc
acgggcggggcctcggggctcgtcggaatcccgcgcccgaccatcctcggcgagcggctc
ggcgccacacgggcgaccggcttcaactactactacctgatcctcgtgttcctgctcgct
gcgatcggcgttcaggcggcgctcgtgaagtcgcgctatggccgggcgatgcgcgcggcg
gcgcagagcgagaacgccgcccgggcgctcgggatcaacgtcgtcggcatccgcacgctc
gccttcgccgtctcggcagggttcgcgggcctcggtggcgcgctcttcgccaatctcgcc
ctgttcgtgaactacgagaccttcaccttcaccgcctcgatcgagcttctcctgatggtc
atcctgggcgggtcgggaacgctcgccggcccgctcgtcggcacgtcgatcctgttctcg
gccacgcagttcctccaggggctcggcgagtggcagaccttcggctatgggctgttgctc
gcgctcgtcctgttcgccctgccgcgcggcatcgtcgggtcactcgcgcggctggcgcag
ggtcgcgcgtcgggtgaggcgacgcgcgaaaccggcccctggcccaactgggtcgagggc
atggagagggtgacggcgcgtcacgaagagagcgggcagtcgacgctgatcacgcgcggc
ctcactctccgtttcggcgggctgacggccgtgaacgctgtggacatcgatgtgcggtcc
cgcacggtgcatgcgctgatcgggccgaacggcgctggcaagtcgagtctgctcaacgtc
gtctccggcttctaccgggcgacatcgggagaggtcagtgtgttcggcgagcgtgtggga
tccctcccgccgcatgtgcttgcttgccgcggcatcgcgcgcaccttccagaacaccgag
ctgttcgggcagatgaccgttctcgagaacgtgcttgtcggccagcacgtgcatttccgg
tcgggctttctcgagacggtgctgcgcctgccgcgctttcggcgcgaggagcgcgccgcg
ctcgaggaggcgcgtcgcctgctcgccttcgtcggcctttccgccttcgccgacgaggag
gcgcgcaacctccccttcggccatcagcgccggctcgagatcgcccgggcgcttgcgttg
cggcccaagctccttctgctcgacgagccggccgcaggcctgacgcatggcgagatcgag
gacctcgtcgccttgatccgcggcctcgccgatcgcggcatgaccatcgtcctcgtcgag
catcatgtggagatgatcatggccgtctccgaccgcgtcaccgttctcgactacggcgag
gtgatcgccgacgggccgcccgccgcgatccagaacgacccgcgcgtgatcgaggcctat
ttcgggcacgccacgctgcctgggcagacggtgccggcgtga
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