KEGG   Branchiostoma floridae (Florida lancelet): BRAFLDRAFT_125949Help
Entry
BRAFLDRAFT_125949 CDS       T01074                                 

Definition
hypothetical protein
Orthology
K11854  
ubiquitin carboxyl-terminal hydrolase 35/38 [EC:3.1.2.15]
Organism
bfo  Branchiostoma floridae (Florida lancelet)
Brite
Enzymes [BR:bfo01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.2  Thioester hydrolases
    3.1.2.15  ubiquitin thiolesterase
     BRAFLDRAFT_125949
Peptidases [BR:bfo01002]
 Cysteine Peptidases
  Family C19: ubiquitin-specific protease family
   BRAFLDRAFT_125949
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: 
Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
JGI: 
UniProt: 
AA seq 972 aa AA seqDB search
MDKVLEGVISSDHPDKVKKALIGKLLLTASKPISPEDGKAIFSLATHWNLQGETPFIRSV
GMQVFLAWGHHHKDILEEFFDIKLVLGVLRGSFTANFPNEKLQLLYLLEGLKMLRGNPCL
LQIYKIVQSDALRLVQDSGSLEVCVALSSLLLEFNQCIPRDTVVKFCEELVKRMALWKSP
ENEASLKDYIQNVTQVSTLLGVVWKKDQSALLPSLRTVFGMISAVEVSSEPSVALASIVP
QVPIDMLAVITRSVVTDPKVRDANVEVSLMRMIGWLSWPVAKNIDQWLVAFLKNLAAVQK
YTLLINITKENVKKVFSRLCYPVVRNSALTVLSHMLLSFQHSPEAFHQIIGLVPEMIVFL
KKEDTTSSLECMGRLAELVHCLIYHHSGFPDLYEPVLDALKGLNKPTEAMVKLRLSQSAW
TSQSNGLLSYHSKFMPRSETGKTGLMNLGNTCYMNSILQALYMADEFRMKVLSYVPNGAK
GVLAQLQDVFAFLSHTQRTAYSPSTFLHTARPPWFTPGSQQDCSEFLKYLLDRIDEEEKA
RKKAQALLSPQDQAHLPSKMAKTEENCRDDAGTPPRKMKSVPGASSLSKCQEVPNCNRVA
VSGNPTVETTSLTAVKPKHLLSPRPNAPTIIEECFGGKMMSSFRCLNCGIVSIKEELFTD
LSLAFPDKDFKSQEGTPVEVTNENSSCELTPNQDSSVVGVASNQVQSTPQNSTNDKLPVM
RSAGTQTEDCAELEDSPLTLENLLSYFLAPETLHGDNKYQCDRCDSLQDAERQIRISHAP
SYLILTLMRFSFDIKTMRRKKIVRNVQVPSTVTLPVCSIDSGDSAQSAIQETSANYSLCA
VVVHSGTSSESGHYYCYASHLPSNQHQVAMETDAQEDDGKVLPGQWFLFNDSRVSYTSLD
SVRNITEKFPKDTAYVLLYKRLGDMEGNLAEGNGVAEPILRKDLLDTITKDNALYLQASI
FNLVPDVQLSVK
NT seq 2919 nt NT seq  +upstreamnt  +downstreamnt
atggacaaggtcttggagggagtgatttcgtccgaccacccagataaagtgaagaaggcc
ctcatcggcaaactccttctcacagccagcaagcctatatcacccgaggatggcaaggcg
atcttttccctggccacacactggaacctccagggagagaccccattcatacgcagtgtc
ggcatgcaggtcttcctcgcgtggggacaccaccacaaggacatcctggaagaattcttc
gacatcaagcttgtcctgggagtccttcgtggctcattcactgcaaacttcccaaacgaa
aaactccaacttctgtatctcttggaaggtttgaagatgctacggggaaatccatgcctg
ctgcagatttataagatagtacagagcgatgccttaaggttggttcaagacagcggcagt
cttgaggtctgcgtggcactaagtagtcttcttctcgagttcaaccagtgtatacccaga
gacacagtcgtgaagttctgtgaggaactggtgaagaggatggccctgtggaagagccca
gaaaatgaagcaagcttgaaggactatatacagaatgtcacacaggtgtcaaccttactg
ggagtggtatggaagaaagatcagtctgctctgttaccgagtctcaggactgtgtttggc
atgatatctgcggtcgaggtatccagcgaaccgtcagttgctctcgcttccatagtccct
caagtccccattgacatgttggcggtcattacgaggagcgtcgtaacagatccgaaagtc
cgcgatgcaaatgtcgaagtgtctctgatgaggatgattggctggttgagctggccagtg
gcaaagaacattgaccaatggctggtggcctttctgaagaacctggctgcagtgcagaag
tacacactacttattaacattacaaaggagaatgtgaaaaaggtgttcagccgcctgtgc
taccctgtagtacgtaacagcgcgctgaccgtgctgtctcacatgctgctcagtttccag
cactcaccagaggctttccatcagattatcggccttgtcccggagatgattgtttttctg
aagaaagaggacaccacgtcgagtcttgagtgcatgggaaggctggcagagctggtgcac
tgtctcatctaccatcactcaggcttccctgacctgtatgagcctgtactggatgcactg
aagggtttgaacaagcccactgaagctatggtaaagcttcgcctgagccagtctgcctgg
acgtcccagagcaacggcctactgagctatcactccaagttcatgcctcgctcggagaca
gggaagacaggcctgatgaacttggggaatacctgctacatgaacagtatcctacaggca
ctctacatggctgatgagttccggatgaaggtactgagctacgtgccaaacggtgctaaa
ggtgttctggcacaactacaggatgtctttgcatttctgtctcacacacagaggacagcc
tattccccatcaacgttcctccacactgcccgtcccccatggttcactcctgggtcccag
caggactgctccgagttcctcaagtacctcctggacaggattgatgaggaagaaaaggcc
aggaagaaagcacaggcactcttgtcccctcaagaccaggcccacctcccgagcaagatg
gccaagacggaggagaattgtcgtgatgacgccggaacgcctcctcgcaagatgaaaagt
gttcccggggcatcctcattgtccaagtgccaagaagtgccaaactgcaacagggttgca
gtctcaggtaaccccacagtggaaacgaccagcctgactgctgtaaaaccaaaacatttg
ctcagtccacgaccaaacgctcctactattatagaggaatgttttggaggcaagatgatg
tccagtttcagatgtttaaactgtggaattgtgtccattaaggaagagctcttcacagat
ttatcactggccttcccagacaaggacttcaaaagccaagaaggaacccctgttgaagta
accaatgagaactcttcctgtgagctgacacccaatcaggattcatctgtagtgggggta
gcatccaatcaggtacaaagtacacctcagaactcgaccaatgacaaactaccagtgatg
agatctgcaggaacacagactgaggactgtgcagaactagaagacagccccttgacttta
gaaaacctcctgtcgtatttcttggcccctgaaacactacacggtgataacaagtatcag
tgtgacaggtgtgacagtctacaggatgcagaaaggcaaattaggataagccacgcaccc
tcttatctcattctcactctcatgaggttctcctttgacattaagaccatgcgaaggaaa
aagattgttagaaacgtacaagtgccctctaccgttacgctccctgtatgtagtatagac
tctggtgattccgcacagagtgctattcaggaaaccagcgcaaattacagcctctgtgct
gttgttgtgcactctggaacatcgtctgagtctggacactactactgttacgcctcccac
ctgccgtctaaccagcatcaggtcgccatggaaactgacgcacaggaggatgatgggaag
gttctgccaggacaatggtttctcttcaacgacagcagggtgtcgtacacgtctctggac
tcggtacggaacatcacggagaagtttccgaaggacaccgcgtacgttctcctgtacaaa
aggttgggagacatggagggaaaccttgcggaggggaacggtgtggctgaacccatcctg
aggaaggacctgttagacaccataacaaaggataatgcactgtacctgcaggcaagtata
tttaatttagtgcctgacgttcagttgtcagtgaaataa

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