KEGG   Dickeya aquatica: DAQ1742_01028
Entry
DAQ1742_01028     CDS       T06021                                 
Symbol
cysA
Name
(GenBank) Sulfate and thiosulfate import ATP-binding protein CysA
  KO
K02045  sulfate/thiosulfate transport system ATP-binding protein [EC:7.3.2.3]
Organism
daq  Dickeya aquatica
Pathway
daq00920  Sulfur metabolism
daq02010  ABC transporters
Brite
KEGG Orthology (KO) [BR:daq00001]
 09100 Metabolism
  09102 Energy metabolism
   00920 Sulfur metabolism
    DAQ1742_01028 (cysA)
 09130 Environmental Information Processing
  09131 Membrane transport
   02010 ABC transporters
    DAQ1742_01028 (cysA)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02000 Transporters [BR:daq02000]
    DAQ1742_01028 (cysA)
Enzymes [BR:daq01000]
 7. Translocases
  7.3  Catalysing the translocation of inorganic anions and their chelates
   7.3.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.3.2.3  ABC-type sulfate transporter
     DAQ1742_01028 (cysA)
Transporters [BR:daq02000]
 ABC transporters, prokaryotic type
  Mineral and organic ion transporters
   Sulfate/thiosulfate transporter
    DAQ1742_01028 (cysA)
SSDB
Motif
Pfam: ABC_tran TOBE_3 AAA_21 SMC_N TOBE_2 AAA_23 AAA_16 Rad17 NACHT AAA_5 AAA RsgA_GTPase ATPase_2 AAA_22 SbcC_Walker_B AAA_25 nSTAND1 AAA_29 AAA_14 AAA_28 nSTAND3 PhoH TsaE AAA_18 DO-GTPase2 AAA_15 Mg_chelatase TOBE NB-ARC AAA_30 PduV-EutP
Other DBs
NCBI-ProteinID: SLM62063
UniProt: A0A375A7Q0
LinkDB
Position
1025375..1026367
AA seq 330 aa
MSIEVQNVNKQFGQFRALNQINLSIQSGELVALLGPSGCGKTTLLRIIAGLETPDSGNIV
FHGEDVSGQDVRDRHVGFVFQHYALFRHMTVFDNVAFGLRMKPKAIRPSKREIESKVHEL
LNMVQLDWLADRYPEQLSGGQRQRIALARALIVEPRILLLDEPFGALDAKVRKELRRWLS
RLHEEINLTSVFVTHDQEEAMEVADRIVLMNKGVIEQIGTPDEVYNRPATEFVYNFLGDS
NRLKLAGQDKVVQFRPHEVSLSKQAQHDYQPVVVKDIRPLGALTRLVLKVDGNNELIEAE
IAHDDAVLADLHRGDVVQFKPKRYNYDWEI
NT seq 993 nt   +upstreamnt  +downstreamnt
atgagcattgaggttcaaaacgttaacaagcagtttggtcagttccgtgcgctcaaccag
ataaacctgtcgattcagagcggtgaattggtcgccctgctggggccatcgggttgtggc
aaaaccacgttactgcgcattatcgccgggctggagacgccagacagcggcaacatcgta
tttcacggtgaagatgtctccgggcaggatgtacgtgaccggcatgtcggttttgtcttc
cagcattacgcgctgttccgccatatgacggtgtttgacaatgtggcttttggcctgcgc
atgaaaccgaaagccattcgcccgtcaaagcgtgaaattgaaagcaaagtgcatgaattg
ctgaacatggtgcaattggactggctggcggatcgttacccggaacagttgtccggcggg
cagcgtcagcgcattgcgctggccagagcgctgattgtcgagccgcgcattctgctgctt
gatgagccgtttggcgcactggatgccaaggtgcgcaaagagttacgccgctggctgtct
cgtttgcatgaggagatcaacctcacgtctgtgtttgtcacccatgaccaggaagaagcc
atggaagtggcagacagaattgtgctgatgaataaaggtgtgattgaacagattgggacg
ccggatgaagtgtataaccgcccggcaaccgagtttgtctataacttccttggcgacagc
aaccggctgaagttggccgggcaggataaagtcgttcagtttcgtccgcacgaagtgtcg
ttatccaaacaggctcagcatgattaccagccggtagtggtaaaggatattcgcccgctg
ggtgccctgacacgactggtgctgaaggtcgatgggaataatgaactgattgaagctgaa
atcgcacatgatgatgcggtgttggctgatttgcaccgtggtgatgtggtgcagtttaag
ccgaaacgttataactacgattgggaaatctga

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