KEGG   Yersinia pestis Harbin 35 (biovar Medievalis): YPC_0396
Entry
YPC_0396          CDS       T01874                                 
Symbol
rarD
Name
(GenBank) putative chloramphenical resistance permease
  KO
K05786  chloramphenicol-sensitive protein RarD
Organism
yph  Yersinia pestis Harbin 35 (biovar Medievalis)
Brite
KEGG Orthology (KO) [BR:yph00001]
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02000 Transporters [BR:yph02000]
    YPC_0396 (rarD)
Transporters [BR:yph02000]
 Other transporters
  Electrochemical potential-driven transporters [TC:2]
   YPC_0396 (rarD)
SSDB
Motif
Pfam: EamA Nuc_sug_transp DUF2070
Other DBs
NCBI-ProteinID: ADV97138
LinkDB
Position
complement(374099..374989)
AA seq 296 aa
MDKQQTRQGIFFALAAYFIWGLAPAYFKLIQQVPADEILTHRVIWSFFFMLILLTVSRHW
PQVRDACKNRKRLLLLAVTAVLIASNWLLFIWAVNHNHMLEASLGYFINPLVNVLFGMLF
LGERFRRMQWVAVALAFAGVLIQLWQFGSLPVIGLGLAITFALYGLLRKKLGVDAQTGML
IETMWLLPVAAVYLFFIADSPTSHLSANAWSLNLLLAAAGVITTIPLLFFTAAATRLRLS
TLGFFQYLGPTLMFILAVTFYGETIGNDKMVTFIFIWAALLLFTLDALYTQRKLRR
NT seq 891 nt   +upstreamnt  +downstreamnt
atggataaacaacaaactcgtcagggcattttttttgctctggctgcctattttatttgg
ggccttgctcccgcgtatttcaaactcatccaacaagtgcccgctgatgagattctgacc
cacagggtcatctggtcattcttctttatgttgattctgcttaccgtcagccgccattgg
ccacaggtgcgcgacgcctgcaaaaaccgtaagcgcctattgttactggcggtgaccgcc
gttttgattgccagtaactggctgctgtttatctgggcggtcaaccacaatcacatgctg
gaagccagtctgggatatttcattaatccgttggtcaatgtgctgtttggcatgttattt
ctcggcgaacgctttcgtcgtatgcaatgggtcgccgtggcactcgcctttgccggcgtg
ctgattcaactgtggcaatttggttcactgccagtgattgggctgggtctggccatcacc
tttgctttatacggcttgttgcgtaaaaagctgggcgttgatgcccaaaccggtatgctc
attgaaaccatgtggctgctaccagtagccgccgtatatctgtttttcatcgccgacagc
ccgaccagccacctgagcgccaatgcctggtcgctgaacctgctgctagccgctgcgggc
gtcattaccacaatcccactgctgttcttcaccgcggcggccacccgtttgcgtctttcg
acactgggtttcttccagtatcttgggccaacattgatgtttattttggcggtgacgttc
tacggtgaaaccattggtaatgacaagatggtgaccttcatctttatctgggcggccctg
ctactgtttacgctggatgcactctatacccaacgcaaactacgccggtaa

DBGET integrated database retrieval system