KEGG   Vibrio fluvialis: AL536_01585
Entry
AL536_01585       CDS       T04379                                 
Name
(GenBank) proline/glycine betaine ABC transporter ATP-binding protein ProV
  KO
K02000  glycine betaine/proline transport system ATP-binding protein [EC:7.6.2.9]
Organism
vfl  Vibrio fluvialis
Pathway
vfl02010  ABC transporters
Brite
KEGG Orthology (KO) [BR:vfl00001]
 09130 Environmental Information Processing
  09131 Membrane transport
   02010 ABC transporters
    AL536_01585
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02000 Transporters [BR:vfl02000]
    AL536_01585
Enzymes [BR:vfl01000]
 7. Translocases
  7.6  Catalysing the translocation of other compounds
   7.6.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.6.2.9  ABC-type quaternary amine transporter
     AL536_01585
Transporters [BR:vfl02000]
 ABC transporters, prokaryotic type
  Mineral and organic ion transporters
   Glycine betaine/proline transporter
    AL536_01585
SSDB
Motif
Pfam: ABC_tran CBS ABC_ATPase AAA_16 AAA_21 AAA_22 AAA_29 RsgA_GTPase Adeno_IVa2 APS_kinase AAA_18 AAA_33 Zeta_toxin DUF87 nSTAND1 SbcC_Walker_B AAA_5 AAA_30 nSTAND3
Other DBs
NCBI-ProteinID: AMF92200
LinkDB
Position
1:complement(325337..326524)
AA seq 395 aa
MSTMLEVKNLFKVFGETPEDAFTLIEQGLNKDQIFEQTGLTVGVKDVSLSINEGEIFVIM
GLSGSGKSTLVRLLNRLIEPTRGSVLLKGSDIAHISDHELREVRRQNISMVFQNFALMPH
MTVIENTAFGLELAGVPEAQRHQTAKAALERVGLDAYCESYPDELSGGMKQRVGLARALT
NDPDILLMDEAFSALDPLIRTEMQDELIRLQNDDKRTIVFISHDLDEAMRIGDRIAIMQD
GVVVQVGTPDEILHQPANDYVSSFFRGVNVASVFCAKDIARKNPAAVFKKHDNDGPAAAM
QMLLDNDREFGIVVDRANKYTGIVSLDSLKEAKREQRSLSSALLADTVTISPDVSVGDLI
GQVAQVPYSVPVVDDDGRYYGVITKTRLLQTLDRE
NT seq 1188 nt   +upstreamnt  +downstreamnt
atgtcaactatgcttgaagtgaagaacctctttaaagtgtttggagagacacccgaggac
gcctttactctcatcgaacaagggctcaataaagatcagatttttgagcaaaccggcctg
accgtgggggttaaagacgtatcactgtcgatcaacgaaggggaaatcttcgtcatcatg
ggtctgtccggctcaggaaaatcgactctggtgcggctgctcaatcgtcttatcgagcct
acccgaggcagcgttctgctcaaaggcagcgatatcgcccatatctccgatcacgagctg
cgagaagttcgtcgtcaaaacatttcgatggtgtttcagaactttgcgctgatgccgcac
atgaccgtgattgaaaacactgcgtttggtctggaactggctggcgtgccggaagcgcaa
cgtcatcagacggcaaaagcggcgctggagcgcgttgggctcgatgcctattgcgaatcc
tatccggacgagctgtccggcgggatgaaacagcgggtcggtcttgcgcgtgcgctgact
aacgatccggacattttgctgatggacgaggctttctccgccctcgacccgctaattcga
accgaaatgcaggatgaactgattcgtctgcaaaatgacgacaaacggaccatcgtgttc
atctcccacgatttggacgaagcaatgcgcatcggcgatcggattgcgatcatgcaagat
ggtgtggtggttcaggtcggcacacccgatgaaatcctgcatcagcccgccaatgactac
gtcagctctttcttccgtggcgtgaacgtcgccagtgtgttctgtgccaaagacattgcc
cgcaagaaccccgccgccgtgttcaaaaagcacgacaacgacggtccggcagccgccatg
caaatgctgctcgataacgaccgtgagttcggcatcgtggtggatcgcgccaacaaatac
accggtattgtctcgctcgattcactcaaagaggcaaaacgtgaacaacgctccctgagt
agcgctctgctggcagacaccgtcaccatctcgcccgacgtttcggtcggagacttaatt
ggccaggtcgcacaagtgccttattccgtgccggtggtcgatgatgacggacgctactac
ggcgtgatcactaagacccgcttgttacaaacactcgatcgcgaataa

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