KEGG   Homo sapiens (human): 57646Help
Entry
57646             CDS       T01001                                 

Gene name
USP28
Definition
ubiquitin specific peptidase 28 (EC:3.4.19.12)
Orthology
K11849  
ubiquitin carboxyl-terminal hydrolase 25/28 [EC:3.1.2.15]
Organism
hsa  Homo sapiens (human)
Brite
Enzymes [BR:hsa01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.2  Thioester hydrolases
    3.1.2.15  ubiquitin thiolesterase
     57646 (USP28)
Peptidases [BR:hsa01002]
 Cysteine Peptidases
  Family C19: ubiquitin-specific protease family
   57646 (USP28)
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
OMIM: 
HGNC: 
HPRD: 
Ensembl: 
Vega: 
UniProt: 
Structure
PDB: 

Jmol
Position
11q23
AA seq 1077 aa AA seqDB search
MTAELQQDDAAGAADGHGSSCQMLLNQLREITGIQDPSFLHEALKASNGDITQAVSLLTD
ERVKEPSQDTVATEPSEVEGSAANKEVLAKVIDLTHDNKDDLQAAIALSLLESPKIQADG
RDLNRMHEATSAETKRSKRKRCEVWGENPNPNDWRRVDGWPVGLKNVGNTCWFSAVIQSL
FQLPEFRRLVLSYSLPQNVLENCRSHTEKRNIMFMQELQYLFALMMGSNRKFVDPSAALD
LLKGAFRSSEEQQQDVSEFTHKLLDWLEDAFQLAVNVNSPRNKSENPMVQLFYGTFLTEG
VREGKPFCNNETFGQYPLQVNGYRNLDECLEGAMVEGDVELLPSDHSVKYGQERWFTKLP
PVLTFELSRFEFNQSLGQPEKIHNKLEFPQIIYMDRYMYRSKELIRNKRECIRKLKEEIK
ILQQKLERYVKYGSGPARFPLPDMLKYVIEFASTKPASESCPPESDTHMTLPLSSVHCSV
SDQTSKESTSTESSSQDVESTFSSPEDSLPKSKPLTSSRSSMEMPSQPAPRTVTDEEINF
VKTCLQRWRSEIEQDIQDLKTCIASTTQTIEQMYCDPLLRQVPYRLHAVLVHEGQANAGH
YWAYIYNQPRQSWLKYNDISVTESSWEEVERDSYGGLRNVSAYCLMYINDKLPYFNAEAA
PTESDQMSEVEALSVELKHYIQEDNWRFEQEVEEWEEEQSCKIPQMESSTNSSSQDYSTS
QEPSVASSHGVRCLSSEHAVIVKEQTAQAIANTARAYEKSGVEAALSEVMLSPAMQGVIL
AIAKARQTFDRDGSEAGLIKAFHEEYSRLYQLAKETPTSHSDPRLQHVLVYFFQNEAPKR
VVERTLLEQFADKNLSYDERSISIMKVAQAKLKEIGPDDMNMEEYKKWHEDYSLFRKVSV
YLLTGLELYQKGKYQEALSYLVYAYQSNAALLMKGPRRGVKESVIALYRRKCLLELNAKA
ASLFETNDDHSVTEGINVMNELIIPCIHLIINNDISKDDLDAIEVMRNHWCSYLGQDIAE
NLQLCLGEFLPRLLDPSAEIIVLKEPPTIRPNSPYDLCSRFAAVMESIQGVSTVTVK
NT seq 3234 nt NT seq  +upstreamnt  +downstreamnt
atgactgcggagctgcagcaggacgacgcggccggcgcggcagacggccacggctcgagc
tgccaaatgctgttaaatcaactgagagaaatcacaggcattcaggacccttcctttctc
catgaagctctgaaggccagtaatggtgacattactcaggcagtcagccttctcactgat
gagagagttaaggagcccagtcaagacactgttgctacagaaccatctgaagtagagggg
agtgctgccaacaaggaagtattagcaaaagttatagaccttactcatgataacaaagat
gatcttcaggctgccattgctttgagtctactggagtctcccaaaattcaagctgatgga
agagatcttaacaggatgcatgaagcaacctctgcagaaactaaacgctcaaagagaaaa
cgctgtgaagtctggggagaaaaccccaatcccaatgactggaggagagttgatggttgg
ccagttgggctgaaaaatgttggcaatacatgttggtttagtgctgttattcagtctctc
tttcaattgcctgaatttcgaagacttgttctcagttatagtctgccacaaaatgtactt
gaaaattgtcgaagtcatacagaaaagagaaatatcatgtttatgcaagagcttcagtat
ttgtttgctctaatgatgggatcaaatagaaaatttgtagacccgtctgcagccctggat
ctattaaagggagcattccgatcatctgaggaacagcagcaagatgtgagtgaattcaca
cacaagctcctggattggctagaggacgcattccagctagctgttaatgttaacagtccc
aggaacaaatctgaaaatccaatggtgcagctgttctatggtactttcctgactgaaggg
gttcgtgaaggaaaacccttttgtaacaatgagaccttcggccagtatcctcttcaggta
aacggttatcgcaacttagacgagtgtttggaaggggccatggtggagggtgatgttgag
cttcttccctccgatcactcggtgaagtatggacaagagcgttggtttacaaagctacct
ccagtgttgacctttgaactctcaagatttgagtttaatcagtcccttgggcagccagag
aaaattcacaataagctggaatttcctcagattatttatatggacaggtacatgtacagg
agcaaggagcttattcgaaataagagagagtgtattcgaaagttgaaggaggaaataaaa
attctgcagcaaaaattggaaaggtatgtgaaatatggctcaggcccagctcggttcccg
ctcccggacatgctgaaatatgttattgaatttgctagtacaaaacctgcctcagaaagc
tgtccacctgaaagtgacacacatatgacattaccactttcttcagtgcactgctcggtt
tctgaccagacatccaaggaaagtacaagtacagaaagctcttctcaggatgttgaaagt
accttttcttctcctgaagattctttacccaagtctaaaccactgacatcttctcggtct
tccatggaaatgccttcacagccagctccacgaacagtcacagatgaggagataaatttt
gttaagacctgtcttcagagatggaggagtgagattgaacaagatatacaagatttaaag
acttgtattgcaagtactactcagactattgaacagatgtactgcgatcctctccttcgt
caggtgccttatcgcttgcatgcagttcttgttcatgaaggacaagcaaatgctggacac
tattgggcctatatctataatcaaccccgacagagctggctcaagtacaatgacatctct
gttactgaatcttcctgggaagaagttgaaagagattcctatggaggcctgagaaatgtt
agtgcttactgtctgatgtacattaatgacaaactaccctacttcaatgcagaggcagcc
ccaactgaatcagatcaaatgtcagaagtggaagccctatctgtggaactcaagcattac
attcaggaggataactggcggtttgagcaggaagtagaggagtgggaagaagagcagtct
tgcaaaatccctcaaatggagtcctccaccaactcctcatcacaggactactctacatca
caagagccttcagtagcctcttctcatggggttcgctgcttgtcgtctgagcatgctgtg
attgtaaaggagcaaactgcccaggctattgcaaacacagcccgtgcctatgagaagagc
ggtgtagaagcggcactgagtgaggtgatgctgagccctgccatgcaaggggtcatcctg
gccatagctaaagcccgtcagacctttgaccgagatgggtctgaagcagggctgattaag
gcattccatgaagaatactccaggctctatcagcttgccaaagagacccccacctctcac
agtgatcctcgacttcagcatgtccttgtctactttttccaaaatgaagcacccaaaagg
gtagtagaacgaacccttctggaacagtttgcagataaaaatcttagctatgatgaaaga
tcaatcagcattatgaaggtggctcaagcgaaactgaaggaaattggtccagatgacatg
aatatggaagagtacaagaagtggcatgaagattatagtttgttccgaaaagtgtctgtg
tatctcctaacaggcctagaactctatcaaaaaggaaagtaccaagaggcactttcctac
ctggtatatgcctaccagagcaatgctgccctgctgatgaaggggccccgccggggggtc
aaagaatccgtgattgctttataccgaagaaaatgccttctggagctgaatgccaaagca
gcttctctttttgaaacaaatgatgatcactccgtaactgagggcattaatgtgatgaat
gaactgatcatcccctgcattcaccttatcattaataatgacatttccaaggatgatctg
gatgccattgaggtcatgagaaaccattggtgctcttaccttgggcaagatattgcagaa
aatctgcagctgtgcctaggggagtttctacccagacttctagatccttctgcagaaatc
atcgtcttgaaagagcctccaactattcgacccaattctccctatgacctatgtagccga
tttgcagctgtcatggagtcaattcagggagtttcaactgtgacagtgaaataa

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