Burkholderia gladioli BSR3: bgla_1g16140
Help
Entry
bgla_1g16140 CDS
T01464
Name
(GenBank) extracellular solute-binding protein family 3
KO
K02030
polar amino acid transport system substrate-binding protein
Organism
bgd
Burkholderia gladioli BSR3
Brite
KEGG Orthology (KO) [BR:
bgd00001
]
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02000 Transporters [BR:
bgd02000
]
bgla_1g16140
Transporters [BR:
bgd02000
]
ABC transporters, prokaryotic type
Phosphate and amino acid transporters
Putative polar amino acid transporter
bgla_1g16140
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
SBP_bac_3
Lig_chan-Glu_bd
SoPB_HTH
TraW_N
Motif
Other DBs
NCBI-ProteinID:
AEA60264
UniProt:
F2LDG1
LinkDB
All DBs
Position
1:complement(1794000..1794827)
Genome browser
AA seq
275 aa
AA seq
DB search
MRLSQFLRAAAIAVPLSLAALCAAPAAAADDLGTLTPGKLIAGVDANNKPYSYVDNGKMT
GFDVELLRAIGARLGLQVEFRAQDFAGMLPGVANRQLDVAAGSISITTDRLKMVDFSEGY
LTGLLSVATLPGSAISADVASVKGKRIGVVQGTIEDTYADTYIPGAQVVRFPNLNAGFLQ
LRSKYIDGYFIDKTLAVGLQAKYPQLNLQDKLDISAVNLPAGFPLRKGNSKLAAALNKSI
DALVADGTWLKLYKQFNPTYPTPTSLPPYAMKTGN
NT seq
828 nt
NT seq
+upstream
nt +downstream
nt
atgcgtttgagccagttcctgcgcgccgccgcgatcgccgtgccgctgtccctcgccgcc
ttgtgcgccgccccggccgctgccgccgacgacctcggcacgctcacgccgggcaagctg
atcgccggcgtggacgccaacaacaagccctattcctacgtcgacaacggcaagatgacg
ggcttcgacgtcgagctgctgcgcgcgatcggcgcgcggctcgggctgcaggtggaattt
cgcgcgcaggacttcgccgggatgctgccgggcgtggcgaaccgccagctcgacgtggcc
gcgggctcgatctcgatcaccaccgaccgcctcaagatggtcgacttctccgagggctac
ctgaccggcctgctgagcgtggcgaccctgccgggcagcgcgatcagcgccgatgtcgcc
tcggtgaaaggcaagcggatcggcgtggtgcagggcaccatcgaggacacctatgccgat
acctacatccccggcgcccaggtggtgcgcttcccgaacctgaacgccggcttcctgcaa
ctgcgctcgaagtacatcgacggctacttcatcgacaagacgctcgcggtggggctgcag
gccaagtacccgcagctgaacctgcaggacaagctcgacatctcggcggtcaacctgccg
gccggcttcccgctgcgcaagggcaacagcaagctggcggcggcgctcaacaagtcgatc
gacgcgctggtggcggacggcacctggctcaagctctacaagcagttcaacccgacctac
ccgacgcccaccagcctgccgccctatgcgatgaagaccggcaactga
DBGET
integrated database retrieval system