KEGG   Helobdella robusta: HELRODRAFT_115822
Entry
HELRODRAFT_115822 CDS       T03272                                 
Name
(RefSeq) hypothetical protein
  KO
K09493  T-complex protein 1 subunit alpha
Organism
hro  Helobdella robusta
Brite
KEGG Orthology (KO) [BR:hro00001]
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03110 Chaperones and folding catalysts [BR:hro03110]
    HELRODRAFT_115822
  09183 Protein families: signaling and cellular processes
   03037 Cilium and associated proteins [BR:hro03037]
    HELRODRAFT_115822
   04147 Exosome [BR:hro04147]
    HELRODRAFT_115822
Chaperones and folding catalysts [BR:hro03110]
 Heat shock proteins
  HSP60 / Chaperonin
   HELRODRAFT_115822
Cilium and associated proteins [BR:hro03037]
 Primary cilia and associated proteins
  BBS-CCT complex
   HELRODRAFT_115822
Exosome [BR:hro04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   HELRODRAFT_115822
  Exosomal proteins of colorectal cancer cells
   HELRODRAFT_115822
  Exosomal proteins of bladder cancer cells
   HELRODRAFT_115822
SSDB
Motif
Pfam: Cpn60_TCP1 Sua5_yciO_yrdC
Other DBs
NCBI-GeneID: 20195611
NCBI-ProteinID: XP_009029402
JGI: Helro1_115822
UniProt: T1EGA9
LinkDB
Position
Unknown
AA seq 558 aa
MTSTMSALCVAGDRTTGQSVRTQNVMAACSIANIVKTSLGPVGLDKMLVDDVGDVTITND
GATILKLLEVEHPAAKVLVELAQLQDEEVGDGTTSVVIIAAELLKNADELVKYKIHPTSI
ISGYRLACKEACKYIQDNLTISTDELGKQSIINAAKTSMSSKVIGSDDEFFANLAVDAAH
AVKVSDGKGGFKYPIKAINVLKAHGMRAVESVLVNGYALNCTVAAQAMPKRITNAKIALL
DFSLQKAKMKLGVQVLVNDPSKLEAIRQRESDITKERVQKILSTGVNVVLTTGGIDDLCT
KYFVDAGAMAVRRCKKVDLKRIAKATGGQLISTLANMEGEESYDASMMGQADEVIQERVS
DDELILIKGPKAHTSASIILRGANDFLLDEMERSLHDALCVIKRVLESKSVVPGGGAVEA
AVSIYLENFASSLSSREQLAIAEFANSLLVIPKQLAVNAALDSTDLVAKLRAFHNSSQTK
PEHKELRWIGLDLIEGKVRDNKEAGVFEPTISKIKSLKFATEAAITILRIDDMIKLAPEQ
PKGKSYGDACNAGELDDY
NT seq 1677 nt   +upstreamnt  +downstreamnt
atgacttcaacgatgagcgctttatgtgtggctggggacagaaccaccggccaatccgtc
cgaacacaaaatgtaatggcagcttgttcgattgccaacattgtgaaaaccagtttgggt
ccggtgggcctggataagatgctggttgacgatgttggggatgtaaccatcactaatgat
ggagccaccattcttaagttgttggaagttgaacacccagctgcaaaggttcttgtcgaa
cttgctcaattgcaagatgaagaagttggtgatggcacaacatctgttgtaatcatagct
gcagaactgttaaaaaatgcagatgaattggttaagtataagatccatccaacctccata
attagtggctacaggctggcctgcaaagaagcttgcaagtacatacaagataacttgacc
atatcaactgatgaacttggcaagcagagcatcatcaatgctgccaagaccagcatgtcc
agcaaagtcattgggtcagatgatgaattttttgctaatctggcagtagatgcagcccat
gctgtgaaagttagtgacgggaaaggaggtttcaagtaccccatcaaggcaataaatgtc
ctgaaagcccatggcatgagagctgttgaaagtgtcctagttaatggatatgctcttaat
tgtactgttgctgctcaagccatgccaaagagaatcacgaatgccaagatagctctgttg
gacttcagtcttcagaaggccaagatgaagttaggagtgcaagtgcttgtcaacgatcct
tctaagctggaggcaatcaggcagagagaaagtgacataacgaaggagagagtccagaag
attctgtccacgggcgtgaatgtggtcttaacaaccgggggcattgacgacctctgcacc
aaatatttcgtcgacgctggggctatggctgttaggaggtgtaagaaagttgatctgaag
aggattgctaaggctactggagggcagttgatatcgactcttgcaaacatggagggtgag
gaaagctatgatgccagcatgatgggacaggctgatgaggtcattcaagagagggtgtct
gacgatgaattgattcttattaagggacccaaggctcacacatcagccagcatcatcttg
agaggagcaaatgattttctgctagatgaaatggaaagatctcttcatgatgccctctgc
gttatcaagcgtgtcctcgagtcaaaatccgtcgtccccggtggtggagctgtggaggct
gctgtctccatctatctcgagaatttcgcttcatctcttagttccagggaacagttggcc
attgcagagtttgcaaatagtttgttggtgattcctaagcagttggcagtcaatgcagct
ctcgattcaaccgatctggtggccaaactgagagctttccataactcttctcagactaaa
cctgagcataaagaattaagatggattggtctcgatctgatagaaggaaaggttcgtgac
aacaaggaagcaggtgtttttgaaccaacgatctccaagatcaaaagtttgaaatttgcc
acagaagctgccataaccattttgagaattgatgatatgattaagctggcccccgaacaa
cccaagggcaaatcttacggtgatgcttgcaacgccggagagctagatgattactag

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