KEGG   Apostichopus japonicus (Japanese sea cucumber): 139958342
Entry
139958342         CDS       T10891                                 
Name
(RefSeq) ATP-dependent translocase ABCB1-like isoform X1
  KO
K05658  ATP-binding cassette, subfamily B (MDR/TAP), member 1 [EC:7.6.2.2]
Organism
ajj  Apostichopus japonicus (Japanese sea cucumber)
Pathway
ajj02010  ABC transporters
Brite
KEGG Orthology (KO) [BR:ajj00001]
 09130 Environmental Information Processing
  09131 Membrane transport
   02010 ABC transporters
    139958342
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02000 Transporters [BR:ajj02000]
    139958342
   04147 Exosome [BR:ajj04147]
    139958342
   04090 CD molecules [BR:ajj04090]
    139958342
Enzymes [BR:ajj01000]
 7. Translocases
  7.6  Catalysing the translocation of other compounds
   7.6.2  Linked to the hydrolysis of a nucleoside triphosphate
    7.6.2.2  ABC-type xenobiotic transporter
     139958342
Transporters [BR:ajj02000]
 ABC transporters, eukaryotic type
  ABCB (MDR/TAP) subfamily
   ABCB1, 4, 5 subgroups
    139958342
Exosome [BR:ajj04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   139958342
CD molecules [BR:ajj04090]
 Proteins
  139958342
SSDB
Motif
Pfam: ABC_membrane ABC_tran SMC_N ABC_ATPase AAA_22 AAA_28 AAA_29 AAA_16 RsgA_GTPase AAA_30 CDC45 Zeta_toxin DUF87 SbcC_Walker_B
Other DBs
NCBI-GeneID: 139958342
NCBI-ProteinID: XP_071811438
LinkDB
Position
18:complement(4192536..4233049)
AA seq 1380 aa
MTVEEDDKKENGTVEHNEKKDGSTEKEIADPVVVELMPANGDSKANEPAAANGNAAATNG
NAVNPMLAEDGGAEKDKADGSEKTETTDEKKEANQVGIISIFRFASVLDILLMLVGSISA
IAHGVALPLVLSFFGDVVDGFIMTSDSNNIGTIPTASGVTMGMVPTINPQAGLEAGLETI
VAFSKNYVILGCVVLLVAFLQSACWNLAAEHQVRVIRTRFFRAVLSQDISWFDEKTGGEL
TTRISDDINKIRSGTGSKIGVILQSCSTTVAGLTIGFLRSWRLSLVIMAVSLGLIIPVFT
VSAIFIKKFTQQALDSYAKAGSVAEEVLSSMRTVTAFGGEAKELERYRTNLGAAKIVGIK
KAAAESSALGALFFVIYGAYAIAFWYGTILILDPNQSFSAGGILITFLAVLFGSFSLAQA
GPNFAEFAAARGAAFAIWEVIDQVPVINCLSDKGLKPSELTGRITFEDIHFVYPSRPDTP
VLKGFNLEVNVGQTVALVGSSGCGKSTTVALMQRYYDPVSGSVKLDGLDIKDLNVHWLRK
NIGVVSQEPILFGTSIAENIRYGRLDVSEEQIHQAAKEANAYDFIMELPEKFETLVGERG
AQLSGGQKQRVAIARALVRNPKILLLDEATSALDSESEGIVQAALEQVQAGRTTIVIAHR
LSTIKNSDKICAIQNGVVVEEGTHAELMDRPDGVYAQLVKQQQTKEVSEVEDEAKEEITD
DEEDEEEGEKELTEKESLDKNRPSSFKMKRSTSRASGGKSPTKRLMSQASVKSDASEHAA
SSGTPILNEDNDEEVLQYFSWGRIMKMNSSEWYLMVIGFIASAFNGGVQPAFAIIFSRVL
RIYGGPPDEIWEGITFFCVFLAALGVVALFSNSVQGVMYAISGERLTERLRYQMFKALLR
MDMSYFDDHENNTGALSTRLATEASLVQGVTGVRFGLVAEVFFNIVVAIIISFIFSWQLT
LLVLAFVPLLGLAGILNWRLFAGGAEKQRKDLEQAGKVVTEATVNIRTVQSLTRELTFWD
KYVQLLHESQTKSYLSAMLQGATFAFSQCIIYFAYAAAFRFGGWLVENGKTDFDDVFLVF
SAIIFGAFGLGRAFAIAPDFAKAKMATARMFLLFDTVPSIDKYNTEGIKPDEYVPEVSFQ
KVRFRYPTRPDVPVLAGLTISVKPGETLALVGSSGCGKSTSVALVERFYDSRSGDVLVGA
YDIKILNLQWWRQQIGLVSQEPVLFDRSIADNIAYGDNSRNVSQEEIEAAAMSANIHDFI
ASLPLGYETRVGDKGTQLSGGQKQRIAIARALLRNPRILLLDEATSALDTESERVVQAAL
DEAKKGRTCITIAHRLSTIHDAEKIAVIRHGRVAELGTHEELMALKEQYYSLYTSQSLMK
NT seq 4143 nt   +upstreamnt  +downstreamnt
atgacagtagaagaagatgataaaaaggaaaatggcacggtggaacacaatgagaagaaa
gatggttccacagagaaagaaattgccgatccagttgtggtggagttaatgccagcgaat
ggtgattccaaggcaaatgaaccagcagctgctaatggcaatgcagcagctactaatggc
aatgcagtaaacccaatgttggcagaggatggtggagcagaaaaggacaaggctgatggc
tctgagaaaacggaaaccacagatgagaagaaagaagctaaccaagttggaattattagt
atcttcaggtttgcatccgttctggatattctgctcatgctggtcggatcaatctctgcc
atagctcatggggtcgccctcccgttggtcctgtccttctttggtgatgttgtggacggt
ttcatcatgacttcagacagcaacaacatcggtacaatccctactgcatcaggtgtgacg
atgggaatggttccaaccataaatccgcaagcaggccttgaagccggtcttgaaaccatc
gtggctttctccaaaaactatgtgatacttggatgtgtagtgctgttggtagcttttctc
caatcagcttgctggaacttggcagcagagcaccaagtcagagtgattcgtactcgcttc
ttccgtgctgttctcagtcaggacatcagctggttcgatgagaagacaggcggagaacta
accaccaggatatcagatgatatcaacaagattcgttctgggaccgggagcaagatagga
gtcatcctccaatcctgctcaacaacagtcgctggactcaccataggattcctgagaagt
tggcgtctgagcttagtcatcatggcagtgtcgctcggcctgatcataccagtatttaca
gtctctgccatcttcatcaagaagttcacacagcaggcacttgattcatatgcaaaagct
ggttctgtggcagaggaagtgctctcatcaatgcggactgtaaccgcttttggtggggag
gctaaagagcttgaaaggtatcggacaaatttgggagcggcaaagatcgtaggcatcaag
aaagcggccgctgagtcgtctgctctgggggcgctgttcttcgttatttacggggcatac
gctatcgctttttggtatggtactatcctgattcttgatcctaatcagagtttctctgct
ggaggtatccttattactttcctggctgttctctttggaagtttctctttggcccaagca
ggtccaaattttgcagaatttgctgcagccagaggagctgcatttgccatatgggaagtc
attgatcaagttccagtgattaattgcttgtcagataaaggcttgaagccatcagaactc
actggacggattacctttgaagacattcacttcgtgtatccatccaggccggacacaccg
gttttaaaaggctttaatttggaggtcaacgttggtcaaacagttgccttagtcgggagc
agtggctgtggaaagagtacaacggtggcattgatgcaaagatactatgatccagtatct
ggttcggtgaaactggatggcctagacattaaagatctcaatgtacactggctgaggaag
aatataggtgtcgtcagccaggaaccgatcctctttggcacatctatcgcagaaaacatt
cgatatggaagattggatgtttctgaagagcagattcaccaagccgcaaaagaagctaat
gcatatgacttcatcatggagttaccagagaaatttgaaacccttgttggagagcgtgga
gcgcaactctcaggtggtcagaagcaacgtgtggccattgctcgtgctctggttcgtaat
cctaagatcctccttttagacgaagcaacttctgcccttgactctgaaagtgaaggtatt
gtccaggctgccctagaacaggttcaagctggtcgcactaccatagtaattgctcatcgt
ctatcaaccatcaagaactctgacaagatttgtgccatccagaatggagtggtcgtcgag
gaagggacccatgctgagctgatggatagacccgatggggtgtatgctcagttggttaaa
caacagcagacaaaggaagttagtgaagttgaagacgaagctaaggaagagatcacagat
gatgaggaggatgaggaggagggagagaaagagctaacggaaaaagaatccttggataaa
aatagaccatcttcctttaagatgaagagatccacttctcgtgcctctggtggaaaaagt
ccaaccaagagactcatgtcacaagcatctgtcaaatctgatgcttcagaacatgcagct
tccagcggtacccccatattgaatgaagacaatgatgaggaagttctccagtatttcagt
tggggaagaatcatgaaaatgaattcatccgagtggtaccttatggtcatcggtttcatt
gcctctgcattcaatggaggagttcaacctgcctttgccatcatcttctcaagagtactc
aggatttacggcggtccaccggacgaaatctgggaaggcattacatttttctgcgttttc
ctggcggctctcggtgtggtagctttattctcaaattctgttcagggcgtaatgtacgca
atttccggggaaagattgaccgaacgcttgcggtaccaaatgttcaaggctcttctcaga
atggatatgagctattttgatgatcatgaaaacaacactggtgctctttcaaccagattg
gcaacagaggcatctcttgttcaaggggtaaccggtgtacgattcggtctggtcgcagag
gtcttctttaacatcgttgtggctatcatcatatccttcattttctcttggcaattgact
ctcctggtcctcgccttcgttcccttgctcggtttggccggaattctcaactggaggcta
ttcgcgggaggtgcagaaaaacaacgaaaagatctggaacaggcaggaaaggttgttact
gaagctacagtgaacatcagaactgtacaatcactgacgagagagttgacattttgggat
aaatatgtacaattattgcatgaatctcagacaaagagttacctgtccgcaatgttacag
ggggcgacctttgcattctcgcagtgcatcatttactttgcgtatgctgcagcttttcga
ttcggtggttggcttgtagagaatggaaagactgactttgatgacgtcttcctggtgttt
tctgccattatttttggtgcctttggactcggcagagctttcgccattgctcctgacttt
gccaaggctaagatggccactgctcgtatgttcctgctctttgacacggtgccaagcatt
gacaagtacaacactgagggcattaaacctgatgagtacgtccctgaagtatccttccag
aaggttcgtttccgttacccaaccaggccagatgttccggtcctagctggtttgaccatc
tcggtcaagccaggtgagaccctcgctctggtgggcagcagtggttgtggcaagagtacc
agtgtggccttggtcgaaaggttttatgattctcgttctggcgatgtgctggtcggggct
tatgacatcaagatcctgaaccttcagtggtggcgccagcagatcggtctggtatctcag
gaaccggttctatttgaccggtccatcgctgataacattgcctacggggacaacagcagg
aatgtctcacaggaggagattgaagctgctgccatgagtgctaacattcatgatttcatc
gccagtttacccttgggatacgagacacgggtaggagacaagggaacacagctttctgga
ggacagaagcagcgtattgcgattgcgagagccctgttgcgaaacccaagaattcttctc
cttgatgaggccacttctgcgctggatactgaaagtgaaagggttgtccaagccgcccta
gacgaagccaagaaaggccgtacctgcatcaccattgcgcatcgtctgtccaccatccac
gatgcggagaagatcgccgttattaggcacggcagagtagccgaactgggaactcatgaa
gagctgatggctctcaaggagcagtactactctctctatacttcacagtcactcatgaag
taa

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